ICEberg
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Organism: Bacillus subtilis subsp. subtilis str. 168
#IDICE nameICE familyReplicon
159 experimental ICEBs1ICEBs1NC_000964
experimental Data derived from experimental literature
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ElementNo. of sequencesDownloadAlignment
ICEs1Fasta-
Proteins25FastaProtein
(1) Lee CA; Thomas J; Grossman AD (2012). The Bacillus subtilis conjugative transposon ICEBs1 mobilizes plasmids lacking dedicated mobilization functions. J Bacteriol. 194(12):3165-72. [PudMed:22505685] experimental
(2) Babic A; Berkmen MB; Lee CA; Grossman AD (2011). Efficient gene transfer in bacterial cell chains. MBio. 2(2). [PudMed:21406598] experimental
(3) Smits WK; Grossman AD (2010). The transcriptional regulator Rok binds A+T-rich DNA and is involved in repression of a mobile genetic element in Bacillus subtilis. PLoS Genet. 6(11):e1001207. [PudMed:21085634] experimental
(4) Bose B; Grossman AD (2011). Regulation of horizontal gene transfer in Bacillus subtilis by activation of a conserved site-specific protease. J Bacteriol. 193(1):22-9. [PudMed:21036995] experimental
(5) Lee CA; Babic A; Grossman AD (2010). Autonomous plasmid-like replication of a conjugative transposon. Mol Microbiol. 75(2):268-79. [PudMed:19943900] experimental
(6) Berkmen MB; Lee CA; Loveday EK; Grossman AD (2010). Polar positioning of a conjugation protein from the integrative and conjugative element ICEBs1 of Bacillus subtilis. J Bacteriol. 192(1):38-45. [PudMed:19734305] experimental
(7) Bose B; Auchtung JM; Lee CA; Grossman AD (2008). A conserved anti-repressor controls horizontal gene transfer by proteolysis. Mol Microbiol. 70(3):570-82. [PudMed:18761623] experimental
(8) Lee CA; Auchtung JM; Monson RE; Grossman AD (2007). Identification and characterization of int (integrase), xis (excisionase) and chromosomal attachment sites of the integrative and conjugative element ICEBs1 of Bacillus subtilis. Mol Microbiol. 66(6):1356-69. [PudMed:18005101] experimental
(9) Lee CA; Grossman AD (2007). Identification of the origin of transfer (oriT) and DNA relaxase required for conjugation of the integrative and conjugative element ICEBs1 of Bacillus subtilis. J Bacteriol. 189(20):7254-61. [PudMed:17693500] experimental
(10) Goranov AI; Kuester-Schoeck E; Wang JD; Grossman AD (2006). Characterization of the global transcriptional responses to different types of DNA damage and disruption of replication in Bacillus subtilis. J Bacteriol. 188(15):5595-605. [PudMed:16855250] experimental
(11) Auchtung JM; Lee CA; Monson RE; Lehman AP; Grossman AD (2005). Regulation of a Bacillus subtilis mobile genetic element by intercellular signaling and the global DNA damage response. Proc Natl Acad Sci U S A. 102(35):12554-9. [PudMed:16105942] experimental
 
experimental experimental literature