SecReT4
SecReT4 contains data from 1565 references related to type IV secretion systems (T4SSs). Last Update: Sep 30, 2019

Categories (Literatures contain following contents are categorized)
reviews experimental studies bioinformatics genome sequencing T4SS component T4SS effectors
conjugation DNA uptake and release effector translocation structural study protein interaction other
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Number of references found for the 'review' category : 258

References
(1) Chmiela M, Kupcinskas J (2019). Review: Pathogenesis of Helicobacter pylori infection. Helicobacter. 24 Suppl 1:e12638. [PudMed:31486234]
(2) Christie PJ (2019). The Rich Tapestry of Bacterial Protein Translocation Systems. Protein J. 38(4):389-408. [PudMed:31407127]
(3) Liu X, Shin S (2019). Viewing Legionella pneumophila Pathogenesis through an Immunological Lens. J Mol Biol. pii: S0022-2836(19)30472-3. [PudMed:31351897]
(4) Québatte M, Dehio C (2019). Bartonella gene transfer agent: Evolution, function, and proposed role in host adaptation. Cell Microbiol. e13068. [PudMed:31231937]
(5) Pena RT, Blasco L, Ambroa A, González-Pedrajo B, Fernández-García L, López M, Bleriot I, Bou G, García-Contreras R, Wood TK, Tomás M (2019). Relationship Between Quorum Sensing and Secretion Systems. Front Microbiol. 10:1100. [PudMed:31231316]
(6) Tsai AY, English BC, Tsolis RM (2019). Hostile Takeover: Hijacking of Endoplasmic Reticulum Function by T4SS and T3SS Effectors Creates a Niche for Intracellular Pathogens. Microbiol Spectr. 7(3). [PudMed:31198132]
(7) Kohler V, Keller W, Grohmann E (2019). Regulation of Gram-Positive Conjugation. Front Microbiol. 10:1134. [PudMed:31191478]
(8) Sgro GG, Oka GU, Souza DP, Cenens W, Bayer-Santos E, Matsuyama BY, Bueno NF, Dos Santos TR, Alvarez-Martinez CE, Salinas RK, Farah CS (2019). Bacteria-Killing Type IV Secretion Systems. Front Microbiol. 10:1078. [PudMed:31164878]
(9) Wagner A, Tittes C, Dehio C (2019). Versatility of the BID Domain: Conserved Function as Type-IV-Secretion-Signal and Secondarily Evolved Effector Functions Within Bartonella-Infected Host Cells. Front Microbiol. 10:921. [PudMed:31130928]
(10) Knorr J, Ricci V, Hatakeyama M, Backert S (2019). Classification of Helicobacter pylori Virulence Factors: Is CagA a Toxin or Not. Trends Microbiol. 27(9):731-738. [PudMed:31130493]
(11) Oikonomou CM, Jensen GJ (2019). Electron Cryotomography of Bacterial Secretion Systems. Microbiol Spectr. 7(2). [PudMed:30953431]
(12) Celli J (2019). The Intracellular Life Cycle of Brucella spp. Microbiol Spectr. 7(2). [PudMed:30848234]
(13) Wagner A, Dehio C (2019). Role of distinct type-IV-secretion systems and secreted effector sets in host adaptation by pathogenic Bartonella species. Cell Microbiol. 21(3):e13004. [PudMed:30644157]
(14) Hayek I, Berens C, Lührmann A (2019). Modulation of host cell metabolism by T4SS-encoding intracellular pathogens. Curr Opin Microbiol. 47:59-65.. [PudMed:30640035]
(15) Waksman G (2019). From conjugation to T4S systems in Gram-negative bacteria: a mechanistic biology perspective.. EMBO Rep. 20(2). pii: e47012. [PudMed:30602585]
(16) Mary C, Baron C (2019). Bases moléculaires de l’infection de plantes par Agrobacterium tumefaciens via un système de sécrétion de type IV. Biochem Cell Biol. 97(3):215-223. [PudMed:30142282]
(17) Rikihisa Y (2019). Subversion of RAB5-regulated autophagy by the intracellular pathogen Ehrlichia chaffeensis. Small GTPases. 10(5):343-349. [PudMed:28650718]
(18) Waskito LA, Yih-Wu J, Yamaoka Y (2018). The role of integrating conjugative elements in Helicobacter pylori: a review. J Biomed Sci. 25(1):86. [PudMed:30497458]
(19) Koraimann G (2018). Spread and Persistence of Virulence and Antibiotic Resistance Genes: A Ride on the F Plasmid Conjugation Module. EcoSal Plus. 8(1). [PudMed:30022749]
(20) Rüter C, Lubos ML, Norkowski S, Schmidt MA (2018). All in-Multiple parallel strategies for intracellular delivery by bacterial pathogens. Int J Med Microbiol. 308(7):872-881. [PudMed:29936031]
(21) Yuan XY, Wang Y, Wang MY (2018). The type IV secretion system in Helicobacter pylori. Future Microbiol. 13:1041-1054. [PudMed:29927340]
(22) Galán JE, Waksman G (2018). Protein-Injection Machines in Bacteria. Cell. 172(6):1306-1318. [PudMed:29522749]
(23) Schroeder GN (2018). The Toolbox for Uncovering the Functions of Legionella Dot/Icm Type IVb Secretion System Effectors: Current State and Future Directions. Front Cell Infect Microbiol. 7:528. [PudMed:29354599]
(24) Grohmann E, Christie PJ, Waksman G, Backert S (2018). Type IV secretion in Gram-negative and Gram-positive bacteria.. Mol Microbiol. 107(4):455-471.. [PudMed:29235173]
(25) Pechstein J, Schulze-Luehrmann J, Lührmann A (2018). Coxiella burnetii as a useful tool to investigate bacteria-friendly host cell compartments. Int J Med Microbiol. 308(1):77-83. [PudMed:28935173]
(26) Steiner B, Weber S, Hilbi H (2018). Formation of the Legionella-containing vacuole: phosphoinositide conversion, GTPase modulation and ER dynamics. Int J Med Microbiol. 308(1):49-57. [PudMed:28865995]
(27) Callaghan MM, Heilers JH, van der Does C, Dillard JP (2017). Secretion of Chromosomal DNA by the Neisseria gonorrhoeae Type IV Secretion System. Curr Top Microbiol Immunol. 413:323-345. [PudMed:29536365]
(28) Christie PJ, Gomez Valero L, Buchrieser C (2017). Biological Diversity and Evolution of Type IV Secretion Systems. Curr Top Microbiol Immunol. 413:1-30. [PudMed:29536353]
(29) Qiu J, Luo ZQ (2017). Hijacking of the Host Ubiquitin Network by Legionella pneumophila. Front Cell Infect Microbiol. 7:487. [PudMed:29376029]
(30) Wessler S, Backert S (2017). A novel basolateral type IV secretion model for the CagA oncoprotein of Helicobacter pylori. Microb Cell. 5(1):60-62. [PudMed:29355242]
(31) Bärlocher K, Welin A, Hilbi H (2017). Formation of the Legionella Replicative Compartment at the Crossroads of Retrograde Trafficking. Front Cell Infect Microbiol. 7:482. [PudMed:29226112]
(32) Camilo V, Sugiyama T, Touati E (2017). Pathogenesis of Helicobacter pylori infection. Helicobacter. 22 Suppl 1. [PudMed:28891130]
(33) Qiu J, Luo ZQ (2017). Legionella and Coxiella effectors: strength in diversity and activity. Nat Rev Microbiol. 15(10):591-605. [PudMed:28713154]
(34) Tegtmeyer N, Neddermann M, Asche CI, Backert S (2017). Subversion of host kinases: a key network in cellular signaling hijacked by Helicobacter pylori CagA. Mol Microbiol. 105(3):358-372. [PudMed:28508421]
(35) Wagner A, Whitaker RJ, Krause DJ, Heilers JH, van Wolferen M, van der Does C, Albers SV (2017). Mechanisms of gene flow in archaea. Nat Rev Microbiol. 15(8):492-501. [PudMed:28502981]
(36) Hatakeyama M (2017). Structure and function of Helicobacter pylori CagA, the first-identified bacterial protein involved in human cancer. Proc Jpn Acad Ser B Phys Biol Sci. 93(4):196-219. [PudMed:28413197]
(37) Sokolova O, Naumann M (2017). NF-κB Signaling in Gastric Cancer. Toxins (Basel). 9(4). pii: E119. [PudMed:28350359]
(38) Backert S, Tegtmeyer N (2017). Type IV Secretion and Signal Transduction of Helicobacter pylori CagA through Interactions with Host Cell Receptors. Toxins (Basel). 9(4). pii: E115. [PudMed:28338646]
(39) Matsuo Y, Kido Y, Yamaoka Y (2017). Helicobacter pylori Outer Membrane Protein-Related Pathogenesis. Toxins (Basel). 9(3). pii: E101. [PudMed:28287480]
(40) Wisniewski JA, Rood JI (2017). The Tcp conjugation system of Clostridium perfringens. Plasmid. 91:28-36. [PudMed:28286218]
(41) Varga MG, Peek RM (2017). DNA Transfer and Toll-like Receptor Modulation by Helicobacter pylori. Curr Top Microbiol Immunol. 400:169-193. [PudMed:28124154]
(42) Naumann M, Sokolova O, Tegtmeyer N, Backert S (2017). Helicobacter pylori: A Paradigm Pathogen for Subverting Host Cell Signal Transmission. Trends Microbiol. 25(4):316-328. [PudMed:28057411]
(43) Chen SY, Zhang RG, Duan GC (2016). Pathogenic mechanisms of the oncoprotein CagA in H. pylori-induced gastric cancer (Review). Oncol Rep. 36(6):3087-3094. [PudMed:27748858]
(44) Christie PJ (2016). The Mosaic Type IV Secretion Systems. EcoSal Plus. 7(1). [PudMed:27735785]
(45) Sherwood RK, Roy CR (2016). Autophagy Evasion and Endoplasmic Reticulum Subversion: The Yin and Yang of Legionella Intracellular Infection. Annu Rev Microbiol. 70:413-33. [PudMed:27607556]
(46) Popa CM, Tabuchi M, Valls M (2016). Modification of Bacterial Effector Proteins Inside Eukaryotic Host Cells. Front Cell Infect Microbiol. 6:73. [PudMed:27489796]
(47) Eisenreich W, Heuner K (2016). The life stage-specific pathometabolism of Legionella pneumophila. FEBS Lett. 590(21):3868-3886. [PudMed:27455397]
(48) Auchtung JM, Aleksanyan N, Bulku A, Berkmen MB (2016). Biology of ICEBs1, an integrative and conjugative element in Bacillus subtilis. Plasmid. 86:14-25. [PudMed:27381852]
(49) Gonzalez-Rivera C, Bhatty M, Christie PJ (2016). Mechanism and Function of Type IV Secretion During Infection of the Human Host. Microbiol Spectr. 4(3). [PudMed:27337453]
(50) Zhao L, Mahony D, Cavallaro AS, Zhang B, Zhang J, Deringer JR, Zhao CX, Brown WC, Yu C, Mitter N, Middelberg AP (2016). Immunogenicity of Outer Membrane Proteins VirB9-1 and VirB9-2, a Novel Nanovaccine against Anaplasma marginale. PLoS One. 11(4):e0154295. [PudMed:27115492]
(51) Zhu W, Luo ZQ (2016). Cell biology and immunology lessons taught by Legionella pneumophila. Sci China Life Sci. 59(1):3-10. [PudMed:26596966]
(52) Ke Y, Wang Y, Li W, Chen Z (2015). Type IV secretion system of Brucella spp. and its effectors. Front Cell Infect Microbiol. 5:72. [PudMed:26528442]
(53) Rikihisa Y (2015). Molecular Pathogenesis of Ehrlichia chaffeensis Infection. Annu Rev Microbiol. 69:283-304. [PudMed:26488275]
(54) Kohler LJ, Roy CR (2015). Biogenesis of the lysosome-derived vacuole containing Coxiella burnetii. Microbes Infect. 17(11-12):766-71. [PudMed:26327296]
(55) Nelson MS, Sadowsky MJ (2015). Secretion systems and signal exchange between nitrogen-fixing rhizobia and legumes. Front Plant Sci. 6:491. [PudMed:26191069]
(56) Backert S, Tegtmeyer N, Fischer W (2015). Composition, structure and function of the Helicobacter pylori cag pathogenicity island encoded type IV secretion system. Future Microbiol. 10(6):955-65. [PudMed:26059619]
(57) So EC, Mattheis C, Tate EW, Frankel G, Schroeder GN (2015). Creating a customized intracellular niche: subversion of host cell signaling by Legionella type IV secretion system effectors. Can J Microbiol. 61(9):617-35. [PudMed:26059316]
(58) Chandran Darbari V, Waksman G. (2015). Structural Biology of Bacterial Type IV Secretion Systems. Annu Rev Biochem. 84:603-29. [PudMed:26034891]
(59) Costa TR, Felisberto-Rodrigues C, Meir A, Prevost MS, Redzej A, Trokter M, Waksman G (2015). Secretion systems in Gram-negative bacteria: structural and mechanistic insights. Nat Rev Microbiol. 13(6):343-59. [PudMed:25978706]
(60) Finsel I, Hilbi H (2015). Formation of a pathogen vacuole according to Legionella pneumophila: how to kill one bird with many stones. Cell Microbiol. 17(7):935-50. [PudMed:25903720]
(61) Asrat S, Davis KM, Isberg RR (2015). Modulation of the host innate immune and inflammatory response by translocated bacterial proteins. Cell Microbiol. 17(6):785-795. [PudMed:25850689]
(62) Ilangovan A, Connery S, Waksman G. (2015). Structural biology of the Gram-negative bacterial conjugation systems. Trends Microbiol. 23(5):301-10. [PudMed:25825348]
(63) Nester EW (2015). Agrobacterium: nature's genetic engineer. Front Plant Sci. 5:730. [PudMed:25610442]
(64) Siamer S, Dehio C (2015). New insights into the role of Bartonella effector proteins in pathogenesis. Curr Opin Microbiol. 23:80-5. [PudMed:25461577]
(65) Juhas M (2015). Type IV secretion systems and genomic islands-mediated horizontal gene transfer in Pseudomonas and Haemophilus. Microbiol Res. 170:10-7. [PudMed:25183653]
(66) Gillespie JJ, Kaur SJ, Rahman MS, Rennoll-Bankert K, Sears KT, Beier-Sexton M, Azad AF (2015). Secretome of obligate intracellular Rickettsia. FEMS Microbiol Rev. 39(1):47-80. [PudMed:25168200]
(67) Juhas M (2015). Horizontal gene transfer in human pathogens. Crit Rev Microbiol. 41(1):101-8. [PudMed:23862575]
(68) Goessweiner-Mohr N, Arends K, Keller W, Grohmann E (2014). Conjugation in Gram-Positive Bacteria. Microbiol Spectr. 2(4):PLAS-0004-2013. [PudMed:26104193]
(69) Rotman E, Seifert HS (2014). The genetics of Neisseria species. Annu Rev Genet. 48:405-31. [PudMed:25251852]
(70) Chang JH, Desveaux D, Creason AL (2014). The ABCs and 123s of bacterial secretion systems in plant pathogenesis. Annu Rev Phytopathol. 52:317-45. [PudMed:24906130]
(71) Isaac DT, Isberg R (2014). Master manipulators: an update on Legionella pneumophila Icm/Dot translocated substrates and their host targets. Future Microbiol. 9(3):343-59. [PudMed:24762308]
(72) Fernandez-Gonzalez E, Backert S (2014). DNA transfer in the gastric pathogen Helicobacter pylori. J Gastroenterol. 49(4):594-604. [PudMed:24515309]
(73) Le PT, Pontarotti P, Raoult D (2014). Alphaproteobacteria species as a source and target of lateral sequence transfers. Trends Microbiol. 22(3):147-56. [PudMed:24461455]
(74) Christie PJ, Whitaker N, González-Rivera C (2014). Mechanism and structure of the bacterial type IV secretion systems. Biochim Biophys Acta. 1843(8):1578-91. [PudMed:24389247]
(75) Wang HP, Zhu YL, Shao W (2013). Role of Helicobacter pylori virulence factor cytotoxin-associated gene A in gastric mucosa-associated lymphoid tissue lymphoma. World J Gastroenterol. 19(45):8219-26. [PudMed:24363512]
(76) Pachathundikandi SK, Tegtmeyer N, Backert S (2013). Signal transduction of Helicobacter pylori during interaction with host cell protein receptors of epithelial and immune cells. Gut Microbes. 4(6):454-74. [PudMed:24280762]
(77) Goessweiner-Mohr N, Arends K, Keller W, Grohmann E (2013). Conjugative type IV secretion systems in Gram-positive bacteria. Plasmid. 70(3):289-302. [PudMed:24129002]
(78) Gomez-Valero L, Buchrieser C (2013). Genome dynamics in Legionella: the basis of versatility and adaptation to intracellular replication. Cold Spring Harb Perspect Med. 3(6). pii: a009993. [PudMed:23732852]
(79) van Wolferen M, Ajon M, Driessen AJ, Albers SV (2013). How hyperthermophiles adapt to change their lives: DNA exchange in extreme conditions. Extremophiles. 17(4):545-63. [PudMed:23712907]
(80) Bhatty M, Laverde Gomez JA, Christie PJ (2013). The expanding bacterial type IV secretion lexicon. Res Microbiol. 164(6):620-39. [PudMed:23542405]
(81) Wong JJ et al (2012). Relaxosome function and conjugation regulation in F-like plasmids - a structural biology perspective. Mol Microbiol. 85(4):602-17. [PudMed:22788760]
(82) McDonough JA et al (2012). Coxiella burnetii Secretion Systems. Adv Exp Med Biol. 984:171-97. [PudMed:22711632]
(83) Gelvin SB (2012). Traversing the Cell: Agrobacterium T-DNA's Journey to the Host Genome. Front Plant Sci. 3:52. [PudMed:22645590]
(84) Shin S (2012). Innate Immunity to Intracellular Pathogens: Lessons Learned from Legionella pneumophila. Adv Appl Microbiol. 79:43-71. [PudMed:22569517]
(85) Smolka AJ et al (2012). How Helicobacter pylori infection controls gastric acid secretion. J Gastroenterol. . [PudMed:22565637]
(86) Thanassi DG et al (2012). Surface organelles assembled by secretion systems of Gram-negative bacteria: diversity in structure and function. FEMS Microbiol Rev. . [PudMed:22545799]
(87) Eicher SC et al (2012). Bartonella entry mechanisms into mammalian host cells. Cell Microbiol. . [PudMed:22519749]
(88) Koch M et al (2012). Induction of microRNA-155 is TLR- and type IV secretion system-dependent in macrophages and inhibits DNA-damage induced apoptosis. Proc Natl Acad Sci U S A. 109(19):E1153-62. [PudMed:22509021]
(89) Ripoll-Rozada J et al (2012). Regulation of the Type IV Secretion ATPase TrwD by Magnesium: IMPLICATIONS FOR CATALYTIC MECHANISM OF THE SECRETION ATPase SUPERFAMILY. J Biol Chem. 287(21):17408-14. [PudMed:22467878]
(90) Chan YA et al (2012). The Lytic Transglycosylases of Neisseria gonorrhoeae. Microb Drug Resist. 18(3):271-9. [PudMed:22432703]
(91) Zechner EL et al (2012). Assembly and mechanisms of bacterial type IV secretion machines. Philos Trans R Soc Lond B Biol Sci. 367(1592):1073-87. [PudMed:22411979]
(92) Rolando M et al (2012). Post-translational modifications of host proteins by Legionella pneumophila: a sophisticated survival strategy. Future Microbiol. 7(3):369-81. [PudMed:22393890]
(93) von Bargen K et al (2012). Internal affairs: investigating the Brucella intracellular lifestyle. FEMS Microbiol Rev. 36(3):533-62. [PudMed:22373010]
(94) Voth DE et al (2012). Bacterial Type IV secretion systems: versatile virulence machines. Future Microbiol. 7(2):241-57. [PudMed:22324993]
(95) de Jong MF et al (2012). Brucellosis and type IV secretion. Future Microbiol. 7(1):47-58. [PudMed:22191446]
(96) Hodges K et al (2012). Interspecies communication in the gut, from bacterial delivery to host-cell response. J Physiol. 590(Pt 3):433-40. [PudMed:22106176]
(97) Luo ZQ (2012). Legionella secreted effectors and innate immune responses. Cell Microbiol. 14(1):19-27. [PudMed:21985602]
(98) Voth DE (2011). ThANKs for the repeat: Intracellular pathogens exploit a common eukaryotic domain. Cell Logist. 1(4):128-132. [PudMed:22279611]
(99) Dubreuil R et al (2011). Bringing host-cell takeover by pathogenic bacteria to center stage. Cell Logist. 1(4):120-124. [PudMed:22279609]
(100) Backert S et al (2011). Molecular mechanisms of gastric epithelial cell adhesion and injection of CagA by Helicobacter pylori. Cell Commun Signal. 9:28. [PudMed:22044679]
(101) Wessler S et al (2011). Regulation of the actin cytoskeleton in Helicobacter pylori-induced migration and invasive growth of gastric epithelial cells. Cell Commun Signal. 9(1):27. [PudMed:22044652]
(102) Berry TM et al (2011). Caught in the act: the dialogue between bacteriophage R17 and the type IV secretion machine of plasmid R1. Mol Microbiol. 82(5):1039-43. [PudMed:22023392]
(103) Ge J et al (2011). Manipulation of host vesicular trafficking and innate immune defence by Legionella Dot/Icm effectors. Cell Microbiol. 13(12):1870-80. [PudMed:21981078]
(104) Backert S et al (2011). Pathogenesis of Helicobacter pylori infection. Helicobacter. 16 Suppl 1:19-25. [PudMed:21896081]
(105) Hilbi H et al (2011). Anchors for effectors: subversion of phosphoinositide lipids by legionella. Front Microbiol. 2:91. [PudMed:21833330]
(106) Ramsey ME et al (2011). The Gonococcal Genetic Island and Type IV Secretion in the Pathogenic Neisseria. Front Microbiol. 2:61. [PudMed:21833316]
(107) Renvoise A et al (2011). Intracellular Rickettsiales: Insights into manipulators of eukaryotic cells. Trends Mol Med. 17(10):573-83. [PudMed:21763202]
(108) Haenssler E et al (2011). Control of host cell phosphorylation by legionella pneumophila. Front Microbiol. 2:64. [PudMed:21747787]
(109) Joshi AD et al (2011). Secrets of a successful pathogen: legionella resistance to progression along the autophagic pathway. Front Microbiol. 2:138. [PudMed:21743811]
(110) Nagai H et al (2011). Type IVB Secretion Systems of Legionella and Other Gram-Negative Bacteria. Front Microbiol. 2:136. [PudMed:21743810]
(111) Locht C et al (2011). The ins and outs of pertussis toxin. FEBS J. 278(23):4668-82. [PudMed:21740523]
(112) Rikihisa Y (2011). Mechanisms of obligatory intracellular infection with Anaplasma phagocytophilum. Clin Microbiol Rev. 24(3):469-89. [PudMed:21734244]
(113) Luo ZQ (2011). Striking a balance: modulation of host cell death pathways by legionella pneumophila. Front Microbiol. 2:36. [PudMed:21687427]
(114) Luo ZQ (2011). Targeting One of its Own: Expanding Roles of Substrates of the Legionella Pneumophila Dot/Icm Type IV Secretion System. Front Microbiol. 2:31. [PudMed:21687422]
(115) Franz B et al (2011). Adhesion and host cell modulation: critical pathogenicity determinants of Bartonella henselae. Parasit Vectors. 4:54. [PudMed:21489243]
(116) Schuelein R et al (2011). Integrin-mediated type IV secretion by Helicobacter: what makes it tick. Trends Microbiol. 19(5):211-6. [PudMed:21371889]
(117) Terradot L et al (2011). Architecture of the Helicobacter pylori Cag-type IV secretion system. FEBS J. 278(8):1213-22. [PudMed:21352491]
(118) Fischer W (2011). Assembly and molecular mode of action of the Helicobacter pylori Cag type IV secretion apparatus. FEBS J. 278(8):1203-12. [PudMed:21352490]
(119) Tegtmeyer N et al (2011). Role of the cag-pathogenicity island encoded type IV secretion system in Helicobacter pylori pathogenesis. FEBS J. 278(8):1190-202. [PudMed:21352489]
(120) Cendron L et al (2011). Structural and functional aspects of unique type IV secretory components in the Helicobacter pylori cag-pathogenicity island. FEBS J. 278(8):1223-31. [PudMed:21284804]
(121) Tegtmeyer N et al (2011). Role of Abl and Src family kinases in actin-cytoskeletal rearrangements induced by the Helicobacter pylori CagA protein. Eur J Cell Biol. 90(11):880-90. [PudMed:21247656]
(122) Hatakeyama M (2011). Anthropological and clinical implications for the structural diversity of the Helicobacter pylori CagA oncoprotein. Cancer Sci. 102(1):36-43. [PudMed:20942897]
(123) Merhej V et al (2011). Rickettsial evolution in the light of comparative genomics. Biol Rev Camb Philos Soc. 86(2):379-405. [PudMed:20716256]
(124) Rodou A et al (2010). Toxins and Secretion Systems of Photorhabdus luminescens. Toxins (Basel). 2(6):1250-64. [PudMed:22069636]
(125) Molnar B et al (2010). Molecular pathogenesis of Helicobacter pylori infection: the role of bacterial virulence factors. Dig Dis. 28(4-5):604-8. [PudMed:21088410]
(126) Smillie C et al (2010). Mobility of plasmids. Microbiol Mol Biol Rev. 74(3):434-52. [PudMed:20805406]
(127) de Jong MF et al (2010). Innate immune encounters of the (Type) 4th kind: Brucella. Cell Microbiol. 12(9):1195-202. [PudMed:20670294]
(128) Wallden K et al (2010). Type IV secretion systems: versatility and diversity in function. Cell Microbiol. 12(9):1203-12. [PudMed:20642798]
(129) Frost LS et al (2010). Regulation of bacterial conjugation: balancing opportunity with adversity. Future Microbiol. 5(7):1057-71. [PudMed:20632805]
(130) Waksman G et al (2010). Molecular architecture of bacterial type IV secretion systems. Trends Biochem Sci. 35(12):691-8. [PudMed:20621482]
(131) Backert S et al (2010). The versatility of Helicobacter pylori CagA effector protein functions: The master key hypothesis. Helicobacter. 15(3):163-76. [PudMed:20557357]
(132) Rikihisa Y (2010). Anaplasma phagocytophilum and Ehrlichia chaffeensis: subversive manipulators of host cells. Nat Rev Microbiol. 8(5):328-39. [PudMed:20372158]
(133) Gillespie JJ et al (2010). Phylogenomics reveals a diverse Rickettsiales type IV secretion system. Infect Immun. 78(5):1809-23. [PudMed:20176788]
(134) Pitzschke A et al (2010). New insights into an old story: Agrobacterium-induced tumour formation in plants by plant transformation. EMBO J. 29(6):1021-32. [PudMed:20150897]
(135) Bhavsar AP et al (2010). Proteomics as a probe of microbial pathogenesis and its molecular boundaries. Future Microbiol. 5(2):253-65. [PudMed:20143948]
(136) Rego AT et al (2010). Two-step and one-step secretion mechanisms in Gram-negative bacteria: contrasting the type IV secretion system and the chaperone-usher pathway of pilus biogenesis. Biochem J. 425(3):475-88. [PudMed:20070257]
(137) Rikihisa Y et al (2010). Anaplasma phagocytophilum and Ehrlichia chaffeensis type IV secretion and Ank proteins. Curr Opin Microbiol. 13(1):59-66. [PudMed:20053580]
(138) de la Cruz F et al (2010). Conjugative DNA metabolism in Gram-negative bacteria. FEMS Microbiol Rev. 34(1):18-40. [PudMed:19919603]
(139) Amer AO (2010). Modulation of caspases and their non-apoptotic functions by Legionella pneumophila. Cell Microbiol. 12(2):140-7. [PudMed:19863553]
(140) Rikihisa Y (2010). Molecular events involved in cellular invasion by Ehrlichia chaffeensis and Anaplasma phagocytophilum. Vet Parasitol. 167(2-4):155-66. [PudMed:19836896]
(141) Ream W (2009). Agrobacterium tumefaciens and A. rhizogenes use different proteins to transport bacterial DNA into the plant cell nucleus. Microb Biotechnol. 2(4):416-27. [PudMed:21255274]
(142) Alvarez-Martinez CE et al (2009). Biological diversity of prokaryotic type IV secretion systems. Microbiol Mol Biol Rev. 73(4):775-808. [PudMed:19946141]
(143) Fronzes R et al (2009). The structural biology of type IV secretion systems. Nat Rev Microbiol. 7(10):703-14. [PudMed:19756009]
(144) Rambow-Larsen AA et al (2009). Brucella regulators: self-control in a hostile environment. Trends Microbiol. 17(8):371-7. [PudMed:19660951]
(145) Minnick MF et al (2009). Pestilence, persistence and pathogenicity: infection strategies of Bartonella. Future Microbiol. 4(6):743-58. [PudMed:19659429]
(146) Franco IS et al (2009). The perplexing functions and surprising origins of Legionella pneumophila type IV secretion effectors. Cell Microbiol. 11(10):1435-43. [PudMed:19563462]
(147) Rikihisa Y et al (2009). Type IV secretion system of Anaplasma phagocytophilum and Ehrlichia chaffeensis. Ann N Y Acad Sci. 1166:106-11. [PudMed:19538269]
(148) Llosa M et al (2009). Bacterial type IV secretion systems in human disease. Mol Microbiol. 73(2):141-51. [PudMed:19508287]
(149) Delpino MV et al (2009). Differential composition of culture supernatants from wild-type Brucella abortus and its isogenic virB mutants. Arch Microbiol. 191(7):571-81. [PudMed:19436993]
(150) Chomel BB et al (2009). Ecological fitness and strategies of adaptation of Bartonella species to their hosts and vectors. Vet Res. 40(2):29. [PudMed:19284965]
(151) Hatakeyama M (2009). Helicobacter pylori and gastric carcinogenesis. J Gastroenterol. 44(4):239-48. [PudMed:19271114]
(152) Shrivastava R et al (2009). Virulence factor secretion and translocation by Bordetella species. Curr Opin Microbiol. 12(1):88-93. [PudMed:19186097]
(153) Kado CI (2009). Horizontal gene transfer: sustaining pathogenicity and optimizing host-pathogen interactions. Mol Plant Pathol. 10(1):143-50. [PudMed:19161360]
(154) Voth DE et al (2009). Coxiella type IV secretion and cellular microbiology. Curr Opin Microbiol. 12(1):74-80. [PudMed:19144560]
(155) Ehsani S et al (2009). Turning on the spotlight--using light to monitor and characterize bacterial effector secretion and translocation. Curr Opin Microbiol. 12(1):24-30. [PudMed:19135407]
(156) Pulliainen AT et al (2009). Bartonella henselae: subversion of vascular endothelial cell functions by translocated bacterial effector proteins. Int J Biochem Cell Biol. 41(3):507-10. [PudMed:19010441]
(157) Sutterwala FS et al (2009). NLRC4/IPAF: a CARD carrying member of the NLR family. Clin Immunol. 130(1):2-6. [PudMed:18819842]
(158) Hatakeyama M (2008). Linking epithelial polarity and carcinogenesis by multitasking Helicobacter pylori virulence factor CagA. Oncogene. 27(55):7047-54. [PudMed:19029944]
(159) Backert S et al (2008). VirB2 and VirB5 proteins: specialized adhesins in bacterial type-IV secretion systems. Trends Microbiol. 16(9):409-13. [PudMed:18706815]
(160) Juhas M et al (2008). Type IV secretion systems: tools of bacterial horizontal gene transfer and virulence. Cell Microbiol. 10(12):2377-86. [PudMed:18549454]
(161) Filloux A et al (2008). The bacterial type VI secretion machine: yet another player for protein transport across membranes. Microbiology. 154(Pt 6):1570-83. [PudMed:18524912]
(162) Dehio C (2008). Infection-associated type IV secretion systems of Bartonella and their diverse roles in host cell interaction. Cell Microbiol. 10(8):1591-8. [PudMed:18489724]
(163) Mimuro H et al (2008). Control of epithelial cell structure and developmental fate: lessons from Helicobacter pylori. Bioessays. 30(6):515-20. [PudMed:18478526]
(164) Yamaoka Y (2008). Roles of the plasticity regions of Helicobacter pylori in gastroduodenal pathogenesis. J Med Microbiol. 57(Pt 5):545-53. [PudMed:18436586]
(165) Backert S et al (2008). Role of type IV secretion in Helicobacter pylori pathogenesis. Cell Microbiol. 10(8):1573-81. [PudMed:18410539]
(166) Shin S et al (2008). Host cell processes that influence the intracellular survival of Legionella pneumophila. Cell Microbiol. 10(6):1209-20. [PudMed:18363881]
(167) Hatakeyama M (2008). SagA of CagA in Helicobacter pylori pathogenesis. Curr Opin Microbiol. 11(1):30-7. [PudMed:18243773]
(168) Zhong Q et al (2007). Type IV secretion system in Helicobacter pylori: a new insight into pathogenicity. Chin Med J (Engl). 120(23):2138-42. [PudMed:18167190]
(169) Miao EA et al (2007). TLR5 and Ipaf: dual sensors of bacterial flagellin in the innate immune system. Semin Immunopathol. 29(3):275-88. [PudMed:17690885]
(170) Ninio S et al (2007). Effector proteins translocated by Legionella pneumophila: strength in numbers. Trends Microbiol. 15(8):372-80. [PudMed:17632005]
(171) Katoh M (2007). Dysregulation of stem cell signaling network due to germline mutation, SNP, Helicobacter pylori infection, epigenetic change and genetic alteration in gastric cancer. Cancer Biol Ther. 6(6):832-9. [PudMed:17568183]
(172) Voth DE et al (2007). Lounging in a lysosome: the intracellular lifestyle of Coxiella burnetii. Cell Microbiol. 9(4):829-40. [PudMed:17381428]
(173) Sundin GW (2007). Genomic insights into the contribution of phytopathogenic bacterial plasmids to the evolutionary history of their hosts. Annu Rev Phytopathol. 45:129-51. [PudMed:17367270]
(174) Baron C et al (2007). Targeting bacterial secretion systems: benefits of disarmament in the microcosm. Infect Disord Drug Targets. 7(1):19-27. [PudMed:17346208]
(175) Angot A et al (2007). Exploitation of eukaryotic ubiquitin signaling pathways by effectors translocated by bacterial type III and type IV secretion systems. PLoS Pathog. 3(1):e3. [PudMed:17257058]
(176) Handa O et al (2007). CagA protein of Helicobacter pylori: a hijacker of gastric epithelial cell signaling. Biochem Pharmacol. 73(11):1697-702. [PudMed:17134680]
(177) Baron C (2006). VirB8: a conserved type IV secretion system assembly factor and drug target. Biochem Cell Biol. 84(6):890-9. [PudMed:17215876]
(178) Hatakeyama M (2006). The role of Helicobacter pylori CagA in gastric carcinogenesis. Int J Hematol. 84(4):301-8. [PudMed:17118755]
(179) Economou A et al (2006). Secretion by numbers: Protein traffic in prokaryotes. Mol Microbiol. 62(2):308-19. [PudMed:17020575]
(180) Hatakeyama M et al (2006). Pathogenesis of Helicobacter pylori infection. Helicobacter. 11 Suppl 1:14-20. [PudMed:16925606]
(181) Katoh M et al (2006). FGF signaling network in the gastrointestinal tract (review). Int J Oncol. 29(1):163-8. [PudMed:16773196]
(182) Cambronne ED et al (2006). Recognition and delivery of effector proteins into eukaryotic cells by bacterial secretion systems. Traffic. 7(8):929-39. [PudMed:16734660]
(183) McCullen CA et al (2006). Agrobacterium tumefaciens and plant cell interactions and activities required for interkingdom macromolecular transfer. Annu Rev Cell Dev Biol. 22:101-27. [PudMed:16709150]
(184) Backert S et al (2006). Type IV secretion systems and their effectors in bacterial pathogenesis. Curr Opin Microbiol. 9(2):207-17. [PudMed:16529981]
(185) Hamilton HL et al (2006). Natural transformation of Neisseria gonorrhoeae: from DNA donation to homologous recombination. Mol Microbiol. 59(2):376-85. [PudMed:16390436]
(186) Hatakeyama M et al (2005). Helicobacter pylori CagA: a new paradigm for bacterial carcinogenesis. Cancer Sci. 96(12):835-43. [PudMed:16367902]
(187) Baron C (2005). From bioremediation to biowarfare: on the impact and mechanism of type IV secretion systems. FEMS Microbiol Lett. 253(2):163-70. [PudMed:16239080]
(188) Naumann M (2005). Pathogenicity island-dependent effects of Helicobacter pylori on intracellular signal transduction in epithelial cells. Int J Med Microbiol. 295(5):335-41. [PudMed:16173500]
(189) Christie PJ et al (2005). Biogenesis, architecture, and function of bacterial type IV secretion systems. Annu Rev Microbiol. 59:451-85. [PudMed:16153176]
(190) Backert S et al (2005). Tyrosine-phosphorylated bacterial effector proteins: the enemies within. Trends Microbiol. 13(10):476-84. [PudMed:16099656]
(191) Christie PJ et al (2005). Structural and dynamic properties of bacterial type IV secretion systems (review). Mol Membr Biol. 22(1-2):51-61. [PudMed:16092524]
(192) Burrows LL (2005). Weapons of mass retraction. Mol Microbiol. 57(4):878-88. [PudMed:16091031]
(193) Bourzac KM et al (2005). Helicobacter pylori-host cell interactions mediated by type IV secretion. Cell Microbiol. 7(7):911-9. [PudMed:15953024]
(194) Schroder G et al (2005). Virulence-associated type IV secretion systems of Bartonella. Trends Microbiol. 13(7):336-42. [PudMed:15935675]
(195) Li J et al (2005). Exploring cargo transport mechanics in the type IV secretion systems. Trends Microbiol. 13(7):295-8. [PudMed:15923116]
(196) Schroder G et al (2005). The mating pair formation system of conjugative plasmids-A versatile secretion machinery for transfer of proteins and DNA. Plasmid. 54(1):1-25. [PudMed:15907535]
(197) Raivio TL (2005). Envelope stress responses and Gram-negative bacterial pathogenesis. Mol Microbiol. 56(5):1119-28. [PudMed:15882407]
(198) Rieder G et al (2005). Interaction of Helicobacter pylori with host cells: function of secreted and translocated molecules. Curr Opin Microbiol. 8(1):67-73. [PudMed:15694859]
(199) Segal G et al (2005). The Icm/Dot type-IV secretion systems of Legionella pneumophila and Coxiella burnetii. FEMS Microbiol Rev. 29(1):65-81. [PudMed:15652976]
(200) Gyemant N et al (2004). Bacterial models for tumor development. Mini-review. Acta Microbiol Immunol Hung. 51(3):321-32. [PudMed:15571072]
(201) Christie PJ (2004). Type IV secretion: the Agrobacterium VirB/D4 and related conjugation systems. Biochim Biophys Acta. 1694(1-3):219-34. [PudMed:15546668]
(202) Kalkum M et al (2004). Protein circlets as sex pilus subunits. Curr Protein Pept Sci. 5(5):417-24. [PudMed:15544536]
(203) Noirot P et al (2004). Protein interaction networks in bacteria. Curr Opin Microbiol. 7(5):505-12. [PudMed:15451506]
(204) Sugiyama T et al (2004). Helicobacter pylori infection and gastric cancer. Med Electron Microsc. 37(3):149-57. [PudMed:15449106]
(205) Lammertyn E et al (2004). Protein secretion in Legionella pneumophila and its relation to virulence. FEMS Microbiol Lett. 238(2):273-9. [PudMed:15358411]
(206) Hofman P et al (2004). Pathogenesis of Helicobacter pylori infection. Helicobacter. 9 Suppl 1:15-22. [PudMed:15347301]
(207) Hatakeyama M (2004). Oncogenic mechanisms of the Helicobacter pylori CagA protein. Nat Rev Cancer. 4(9):688-94. [PudMed:15343275]
(208) Sugiyama T (2004). Development of gastric cancer associated with Helicobacter pylori infection. Cancer Chemother Pharmacol. 54 Suppl 1:S12-20. [PudMed:15309509]
(209) Carroll IM et al (2004). Revisiting the pestilence of Helicobacter pylori: insights into geographical genomics and pathogen evolution. Infect Genet Evol. 4(2):81-90. [PudMed:15157625]
(210) Lybarger SR et al (2004). Microbiology. A hitchhiker's guide to type IV secretion. Science. 304(5674):1122-3. [PudMed:15155939]
(211) Gomis-Ruth FX et al (2004). Coupling factors in macromolecular type-IV secretion machineries. Curr Pharm Des. 10(13):1551-65. [PudMed:15134575]
(212) Remaut H et al (2004). Structural biology of bacterial pathogenesis. Curr Opin Struct Biol. 14(2):161-70. [PudMed:15093830]
(213) Azuma T (2004). Helicobacter pylori CagA protein variation associated with gastric cancer in Asia. J Gastroenterol. 39(2):97-103. [PudMed:15069615]
(214) Celli J et al (2004). Organelle robbery: Brucella interactions with the endoplasmic reticulum. Curr Opin Microbiol. 7(1):93-7. [PudMed:15036147]
(215) McGraw EA et al (2004). Wolbachia pipientis: intracellular infection and pathogenesis in Drosophila. Curr Opin Microbiol. 7(1):67-70. [PudMed:15036143]
(216) Yeo HJ et al (2004). Unveiling molecular scaffolds of the type IV secretion system. J Bacteriol. 186(7):1919-26. [PudMed:15028675]
(217) Rosen H (2004). Bacterial responses to neutrophil phagocytosis. Curr Opin Hematol. 11(1):1-6. [PudMed:14676620]
(218) Cascales E et al (2003). The versatile bacterial type IV secretion systems. Nat Rev Microbiol. 1(2):137-49. [PudMed:15035043]
(219) Hase K et al (2003). Expression of LL-37 by human gastric epithelial cells as a potential host defense mechanism against Helicobacter pylori. Gastroenterology. 125(6):1613-25. [PudMed:14724813]
(220) Koraimann G (2003). Lytic transglycosylases in macromolecular transport systems of Gram-negative bacteria. Cell Mol Life Sci. 60(11):2371-88. [PudMed:14625683]
(221) Ding Z et al (2003). The outs and ins of bacterial type IV secretion substrates. Trends Microbiol. 11(11):527-35. [PudMed:14607070]
(222) Henderson B et al (2003). Molecular pathogenicity of the oral opportunistic pathogen Actinobacillus actinomycetemcomitans. Annu Rev Microbiol. 57:29-55. [PudMed:14527274]
(223) Lawley TD et al (2003). F factor conjugation is a true type IV secretion system. FEMS Microbiol Lett. 224(1):1-15. [PudMed:12855161]
(224) Duckely M et al (2003). The VirE2 protein of Agrobacterium tumefaciens: the Yin and Yang of T-DNA transfer. FEMS Microbiol Lett. 223(1):1-6. [PudMed:12798992]
(225) Grohmann E et al (2003). Conjugative plasmid transfer in gram-positive bacteria. Microbiol Mol Biol Rev. 67(2):277-301, table of contents. [PudMed:12794193]
(226) Nagai H et al (2003). Show me the substrates: modulation of host cell function by type IV secretion systems. Cell Microbiol. 5(6):373-83. [PudMed:12780775]
(227) Chen I et al (2003). DNA transport during transformation. Front Biosci. 8:s544-56. [PudMed:12700070]
(228) Backert S et al (2002). Helicobacter pylori type IV secretion, host cell signalling and vaccine development. Keio J Med. 51 Suppl 2:6-14. [PudMed:12528929]
(229) Lugtenberg BJ et al (2002). Microbe-plant interactions: principles and mechanisms. Antonie Van Leeuwenhoek. 81(1-4):373-83. [PudMed:12448736]
(230) Schulein R et al (2002). The VirB/VirD4 type IV secretion system of Bartonella is essential for establishing intraerythrocytic infection. Mol Microbiol. 46(4):1053-67. [PudMed:12421311]
(231) Boschiroli ML et al (2002). Type IV secretion and Brucella virulence. Vet Microbiol. 90(1-4):341-8. [PudMed:12414154]
(232) Gorvel JP et al (2002). Brucella intracellular life: from invasion to intracellular replication. Vet Microbiol. 90(1-4):281-97. [PudMed:12414149]
(233) Fischer W et al (2002). Type IV secretion systems in pathogenic bacteria. Int J Med Microbiol. 292(3-4):159-68. [PudMed:12398207]
(234) Llosa M et al (2002). Bacterial conjugation: a two-step mechanism for DNA transport. Mol Microbiol. 45(1):1-8. [PudMed:12100543]
(235) Marshall B (2002). Helicobacter pylori: 20 years on. Clin Med. 2(2):147-52. [PudMed:11991099]
(236) Baron C et al (2002). Bacterial secrets of secretion: EuroConference on the biology of type IV secretion processes. Mol Microbiol. 43(5):1359-65. [PudMed:11918819]
(237) Smeets LC et al (2002). Natural transformation in Helicobacter pylori: DNA transport in an unexpected way. Trends Microbiol. 10(4):159-62; discussion 162. [PudMed:11912014]
(238) Sexton JA et al (2002). Type IVB secretion by intracellular pathogens. Traffic. 3(3):178-85. [PudMed:11886588]
(239) Go MF (2002). Review article: natural history and epidemiology of Helicobacter pylori infection. Aliment Pharmacol Ther. 16 Suppl 1:3-15. [PudMed:11849122]
(240) Allen LA (2001). The role of the neutrophil and phagocytosis in infection caused by Helicobacter pylori. Curr Opin Infect Dis. 14(3):273-7. [PudMed:11964843]
(241) Naumann M (2001). Host cell signaling in Helicobacter pylori infection. Int J Med Microbiol. 291(4):299-305. [PudMed:11680790]
(242) Megraud F (2001). Impact of Helicobacter pylori virulence on the outcome of gastroduodenal diseases: lessons from the microbiologist. Dig Dis. 19(2):99-103. [PudMed:11549817]
(243) Gomis-Ruth FX et al (2001). Structure of TrwB, a gatekeeper in bacterial conjugation. Int J Biochem Cell Biol. 33(9):839-43. [PudMed:11461827]
(244) Dundon WG et al (2001). Virulence factors of Helicobacter pylori. Int J Med Microbiol. 290(8):647-58. [PudMed:11310443]
(245) Christie PJ (2001). Type IV secretion: intercellular transfer of macromolecules by systems ancestrally related to conjugation machines. Mol Microbiol. 40(2):294-305. [PudMed:11309113]
(246) Censini S et al (2001). Cellular responses induced after contact with Helicobacter pylori. Curr Opin Microbiol. 4(1):41-6. [PudMed:11173032]
(247) Linton D et al (2001). Deciphering Campylobacter jejuni cell surface interactions from the genome sequence. Curr Opin Microbiol. 4(1):35-40. [PudMed:11173031]
(248) Swanson MS et al (2000). Legionella pneumophila pathogesesis: a fateful journey from amoebae to macrophages. Annu Rev Microbiol. 54:567-613. [PudMed:11018138]
(249) Hofreuter D et al (2000). Genetic competence in Helicobacter pylori: mechanisms and biological implications. Res Microbiol. 151(6):487-91. [PudMed:10961464]
(250) Christie PJ et al (2000). Bacterial type IV secretion: conjugation systems adapted to deliver effector molecules to host cells. Trends Microbiol. 8(8):354-60. [PudMed:10920394]
(251) China B et al (1999). Secretion of virulence factors by Escherichia coli. Vet Res. 30(2-3):181-202. [PudMed:10367354]
(252) Covacci A et al (1999). Helicobacter pylori virulence and genetic geography. Science. 284(5418):1328-33. [PudMed:10334982]
(253) Taylor DE (1999). Helicobacter pylori and its genome: lessons from the treasure map. Can J Gastroenterol. 13(3):218-23. [PudMed:10331932]
(254) Vogel JP et al (1999). Cell biology of Legionella pneumophila. Curr Opin Microbiol. 2(1):30-4. [PudMed:10047559]
(255) Burns DL (1999). Biochemistry of type IV secretion. Curr Opin Microbiol. 2(1):25-9. [PudMed:10047550]
(256) Kwaik YA (1998). Fatal attraction of mammalian cells to Legionella pneumophila. Mol Microbiol. 30(4):689-95. [PudMed:10094618]
(257) Zupan JR et al (1998). Assembly of the VirB transport complex for DNA transfer from Agrobacterium tumefaciens to plant cells. Curr Opin Microbiol. 1(6):649-55. [PudMed:10066547]
(258) Frost LS et al (1994). Analysis of the sequence and gene products of the transfer region of the F sex factor. Microbiol Rev. 58(2):162-210. [PudMed:7915817]