Detailed information    

insolico Bioinformatically predicted

Overview


Name   chpA   Type   Regulator
Locus tag   NU955_RS14780 Genome accession   NZ_CP102762
Coordinates   3127207..3131727 (-) Length   1506 a.a.
NCBI ID   WP_005127981.1    Uniprot ID   A0A9E9MCI5
Organism   Acinetobacter baumannii strain AOR07-BL     
Function   regulation of type IV pilus assembly (predicted from homology)   
Competence regulation

Genomic Context


Location: 3122207..3136727
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  NU955_RS14750 - 3122612..3122980 (-) 369 WP_001259501.1 YbaN family protein -
  NU955_RS14755 - 3123085..3123993 (+) 909 WP_030423621.1 DUF1853 family protein -
  NU955_RS14760 - 3124092..3124235 (+) 144 WP_001984826.1 entericidin A/B family lipoprotein -
  NU955_RS14765 dapE 3124361..3125494 (+) 1134 WP_005127985.1 succinyl-diaminopimelate desuccinylase -
  NU955_RS14770 - 3125632..3126514 (-) 883 Protein_2883 alpha/beta fold hydrolase -
  NU955_RS14775 - 3126746..3127210 (-) 465 WP_000678925.1 hypothetical protein -
  NU955_RS14780 chpA 3127207..3131727 (-) 4521 WP_005127981.1 Hpt domain-containing protein Regulator
  NU955_RS14785 - 3131874..3133952 (-) 2079 WP_000505934.1 methyl-accepting chemotaxis protein -
  NU955_RS14790 - 3133999..3134535 (-) 537 WP_000729759.1 chemotaxis protein CheW -
  NU955_RS14795 - 3134596..3134958 (-) 363 WP_000101096.1 response regulator -
  NU955_RS14800 pilG 3134982..3135365 (-) 384 WP_000389061.1 twitching motility response regulator PilG Regulator
  NU955_RS14805 - 3135648..3136286 (+) 639 WP_002027721.1 hypothetical protein -

Sequence


Protein


Download         Length: 1506 a.a.        Molecular weight: 171811.05 Da        Isoelectric Point: 4.3438

>NTDB_id=718857 NU955_RS14780 WP_005127981.1 3127207..3131727(-) (chpA) [Acinetobacter baumannii strain AOR07-BL]
MKEILKTLTEAMTLPEDSYSEQDAEFLEIFIEEIEEIFVDLQPLINKWMQSENIATLTEIRRHFHTLKGSGRMIGAKSSA
ELAWTVEDTLNRVINQSLQLTPTIQSYVQLVFKFYFLKLVDNFKQKRAHTLDFRPLILLGQQLQQQQSLEPALEELLQLS
NTLTAETVTGLELGYIEQDSLAEPIIQTTHTEIEINLDETLTLFMEEAEEHLATIHQFLDQELHQYDSYNALIRALHTLR
GSSAMAQVETIFEASTKVEHLFKILLQEELSSHSEEILLLQEYREFVRDSLELLSRYSSSEQLEARLQQFNQSWDAYVEQ
HGDRTDPLMPSHGLVSQLLQLDVSELLDAELDFEKGIRNEFPDYLERLSEQANLLLQHTHSQAMLGLHEYTSQLKESYEV
LLDKPALLQSDYIFEIYQKAHQQLIQLFDALAAGQRVGVVKQHQSILEELRLYTRYTPDLSNDLPQQDSTSFEPISNIEL
EPEVVATVENFSDSADWAVLGQSVQQDRQYISSTQVNRNFDADLLDIFLEEAEELLEGIDTDLNIWVGEQENFAALNNLM
RYLHTLKGGANMVQATYLGLIAHELESIYERLIQKQLVATSDLIDFIRLVQDDLADRLQIMREQQLDYAAPYTINALKRA
GQNSNFQPLPVVEAFDTESEIFSEQEVISEVIIDEIPVEFEPALAELETHHDQVFDTAVTELATPVEVITSVTSQENRVA
ADEQDIEAVVEQTFLEEATELLEMAESLLKQWFEQRTNRSILLQLQRAVHSLKGGARMVGLEAVQAIAYQLENAFEQFAL
HHFNSNIYDHLLESAIAWLKDAIFNHNYQHFDGLQQSLENIQFFETTIQIPTKLTRADLFSSEPVMTFIQGDGTEPPPMM
GAWEQTERLDQNNEMIRVSADLIEKMIDLSGENSINRSRIEMDLSQFSHTLVEMELAIQRLADQLRRMEGELETQIIAKH
GIEHSRYTDFDPLEMDQYSSLNQLSKSLAESASDLVDFKNTLTDKIRDTESLLLQQSRIQAEIQEGLMRTRLVPFSRLLP
RLQRIVRQTSTALNRPAELFVNNTEGELDRNILERLVTPLEHMLRNAIDHGLEDRAQRQQANKPETGRIELNIQRQGTDV
VVVFSDDGQGIDVEKVRQKALLAGLIKPEQDLEQQDILQLIFHPGLSTAEHVTQISGRGVGLDVVQSDIKSLGGHVSVES
VYGQGTTFTIRVPTTVAVSDALMVKVADQQFAIPLAQIDRIIRVSPASLEQYFESPQELFEYENKRYPLRYLSEFVGNQP
IPRLNGIMYSLPVLMIKANNGQTVALLVDQLIGSRAQIVVKPIGQQFSSIGAIAGATILGDGQVCLILDGQNIARQIQST
QRHKQLSEAIYRQRESDERRLIMIVDDSVTVRKVTSRLLERQGYDVVTAKDGVDAIEQLENIKPDLMLLDIEMPRMDGFE
VLNLVRHHDMHQYMPIIMITSRTGEKHRERAFSLGVSQYMGKPFQEEELLENIDALLVAFESEVKS

Nucleotide


Download         Length: 4521 bp        

>NTDB_id=718857 NU955_RS14780 WP_005127981.1 3127207..3131727(-) (chpA) [Acinetobacter baumannii strain AOR07-BL]
ATGAAAGAAATATTAAAAACTTTAACTGAAGCAATGACGCTACCTGAAGATAGCTATTCTGAACAAGATGCTGAGTTTCT
TGAGATCTTCATTGAAGAAATTGAAGAGATTTTTGTTGATTTGCAACCTTTGATAAATAAATGGATGCAGTCTGAGAATA
TTGCTACGCTCACTGAAATTCGTCGTCATTTCCATACCTTAAAAGGTTCCGGAAGAATGATTGGCGCTAAATCTTCAGCT
GAGCTTGCGTGGACAGTTGAAGATACACTCAACCGGGTAATCAACCAAAGCTTACAATTAACGCCAACTATCCAGAGCTA
TGTGCAGTTAGTATTTAAGTTCTATTTCCTTAAATTAGTAGATAATTTTAAGCAAAAACGAGCACATACCTTAGATTTCA
GACCTCTTATTTTATTAGGCCAACAACTACAACAACAGCAAAGTTTAGAACCAGCTTTAGAAGAGCTTTTACAACTTTCA
AATACGCTTACGGCCGAAACAGTGACTGGTCTTGAGCTAGGTTATATCGAACAAGATTCGTTAGCCGAGCCAATCATTCA
AACTACACATACTGAAATTGAAATAAATCTAGATGAAACCTTGACCTTATTTATGGAAGAGGCAGAAGAACATTTAGCCA
CGATCCATCAATTCTTAGATCAAGAGTTACATCAGTACGACAGTTATAACGCTTTAATCCGCGCTTTACATACTTTGCGT
GGTAGTTCTGCAATGGCGCAGGTCGAAACAATTTTCGAGGCCAGTACCAAAGTTGAGCATTTATTTAAAATACTGCTGCA
AGAAGAGTTATCTTCTCACTCTGAAGAAATTTTATTATTACAAGAATATCGTGAGTTTGTTCGAGATAGCTTGGAACTAC
TATCTAGATATAGTTCAAGTGAACAGCTCGAAGCGAGATTGCAGCAATTTAATCAATCTTGGGATGCATATGTTGAGCAA
CATGGTGACCGAACAGATCCGTTAATGCCTTCTCATGGTTTGGTATCACAATTATTACAATTAGATGTTTCTGAATTACT
GGATGCAGAATTAGATTTTGAGAAGGGTATTCGTAATGAGTTTCCTGATTATCTTGAACGCCTAAGTGAACAGGCTAACT
TATTACTGCAACATACACATTCTCAAGCAATGCTGGGTTTACATGAATATACCAGCCAACTGAAAGAAAGTTATGAAGTA
CTGCTTGATAAACCTGCGTTATTACAATCAGACTATATATTTGAAATTTATCAAAAAGCGCATCAACAGCTCATTCAATT
ATTTGATGCTTTAGCTGCTGGTCAGCGAGTCGGTGTTGTTAAGCAACATCAAAGTATTTTAGAAGAATTAAGACTTTATA
CGCGGTACACTCCAGACCTATCAAATGACCTGCCTCAGCAGGATTCGACATCTTTTGAACCAATATCCAATATTGAACTA
GAGCCAGAAGTAGTAGCTACTGTAGAGAATTTCTCAGACTCTGCAGACTGGGCGGTATTAGGTCAAAGTGTGCAGCAAGA
TCGACAATATATTTCCTCTACACAAGTGAATCGAAATTTTGATGCTGATCTTTTAGATATCTTTCTTGAGGAAGCTGAAG
AATTACTTGAGGGAATTGATACCGATCTTAATATTTGGGTAGGTGAGCAAGAAAACTTTGCAGCTCTGAACAACCTAATG
CGTTATTTGCATACCTTGAAAGGGGGCGCAAATATGGTTCAGGCAACTTATCTTGGTTTGATTGCCCATGAATTAGAAAG
CATCTATGAGCGTTTAATTCAAAAGCAATTAGTGGCAACTTCAGATTTAATTGATTTTATTCGTTTGGTTCAAGATGACT
TGGCTGACCGTTTACAAATCATGCGTGAACAACAACTAGATTATGCAGCCCCTTACACAATTAACGCATTAAAACGAGCG
GGTCAAAACTCTAACTTCCAACCTTTACCAGTGGTTGAGGCATTTGATACTGAAAGTGAGATATTCTCTGAGCAAGAGGT
GATATCTGAAGTAATAATAGATGAGATACCGGTAGAATTTGAACCTGCTCTTGCAGAGCTAGAAACTCATCACGATCAGG
TATTCGATACAGCGGTTACCGAGTTAGCTACTCCAGTTGAAGTGATTACCTCGGTTACATCGCAAGAGAATAGAGTTGCA
GCTGATGAACAGGACATTGAGGCTGTTGTTGAACAGACGTTCCTAGAAGAAGCTACTGAATTGTTAGAAATGGCTGAGTC
GCTATTAAAACAATGGTTTGAACAGCGTACAAACCGTAGTATTTTGCTTCAGCTTCAAAGAGCCGTGCACAGTTTAAAAG
GTGGTGCACGGATGGTGGGTTTAGAAGCCGTACAAGCAATTGCCTACCAACTAGAAAATGCTTTTGAACAATTTGCGCTA
CATCACTTCAATTCGAATATTTATGATCATTTATTAGAAAGTGCGATTGCATGGTTAAAAGATGCAATTTTCAACCATAA
TTATCAGCATTTCGATGGATTACAGCAAAGTTTAGAAAATATTCAATTCTTTGAAACTACAATCCAGATTCCAACTAAGT
TAACTAGAGCGGACTTGTTTAGCTCAGAACCAGTGATGACCTTTATACAAGGTGATGGTACAGAGCCTCCACCAATGATG
GGAGCGTGGGAGCAAACAGAGCGTCTGGATCAGAATAATGAAATGATCCGTGTTTCAGCCGACTTAATCGAGAAAATGAT
TGATTTGTCTGGTGAAAACTCCATTAACCGTTCACGAATTGAAATGGACCTAAGCCAGTTTAGCCATACACTAGTTGAAA
TGGAGTTGGCGATTCAACGACTTGCCGATCAGTTACGTCGAATGGAAGGTGAGTTAGAAACACAGATTATTGCTAAACAT
GGAATTGAACATTCTCGTTATACCGACTTTGATCCGTTAGAGATGGACCAGTATTCATCTTTAAATCAATTGTCGAAATC
GCTTGCTGAATCTGCATCGGACTTGGTCGACTTTAAAAATACGTTAACTGACAAGATCAGAGATACCGAAAGTTTGCTTT
TACAACAATCACGAATTCAAGCGGAAATTCAAGAAGGTTTAATGCGGACACGTTTGGTCCCATTTTCGCGTTTATTGCCG
CGTTTACAACGAATTGTTCGTCAAACGTCTACAGCATTGAATAGACCTGCTGAGCTTTTCGTAAATAATACGGAAGGTGA
GTTGGACCGCAACATTTTAGAACGGTTAGTGACTCCGCTTGAGCATATGCTCAGAAACGCAATTGACCATGGTTTAGAGG
ACCGAGCGCAGCGGCAACAAGCAAATAAACCGGAAACAGGGCGTATTGAACTTAATATTCAGCGTCAAGGTACGGATGTT
GTGGTTGTCTTTAGTGATGATGGTCAAGGTATTGATGTTGAAAAAGTACGTCAGAAAGCACTCCTTGCCGGATTGATCAA
GCCAGAACAAGACTTAGAACAGCAAGACATACTGCAACTCATTTTCCATCCGGGTTTAAGTACAGCAGAACATGTCACTC
AGATTTCCGGGCGTGGTGTAGGTCTTGATGTCGTGCAGAGTGATATTAAGTCTTTGGGGGGACATGTCAGCGTTGAATCC
GTCTATGGGCAGGGAACAACATTTACGATTCGCGTACCGACTACAGTAGCGGTAAGTGATGCCTTAATGGTTAAAGTGGC
AGATCAACAATTTGCGATTCCACTTGCTCAAATCGATCGAATTATTCGAGTATCACCAGCCTCTTTAGAGCAGTATTTTG
AAAGTCCTCAAGAACTATTTGAGTATGAAAATAAACGTTATCCATTACGTTATCTTTCAGAATTTGTTGGTAACCAACCC
ATACCACGTTTAAATGGTATAATGTATTCATTACCTGTGTTAATGATTAAAGCCAATAATGGCCAAACTGTGGCATTACT
TGTTGATCAGTTAATTGGCTCTCGAGCACAAATTGTAGTGAAACCAATTGGTCAACAGTTCTCTAGCATTGGAGCAATTG
CAGGCGCCACAATTTTAGGTGATGGACAGGTCTGCTTAATTTTAGACGGACAAAATATTGCGCGACAAATTCAGTCAACT
CAGCGTCATAAACAACTTAGTGAAGCAATATATAGACAACGAGAGTCTGATGAACGCCGTCTCATCATGATTGTAGATGA
CTCAGTAACTGTACGTAAGGTCACTTCCCGATTACTTGAACGCCAAGGCTATGATGTGGTTACGGCTAAAGATGGTGTTG
ACGCCATAGAGCAGCTAGAAAATATTAAGCCAGATTTGATGCTACTTGATATTGAAATGCCACGTATGGATGGTTTTGAG
GTTCTCAATCTTGTACGACATCATGATATGCATCAATACATGCCAATTATTATGATTACATCCAGAACAGGTGAAAAACA
TCGTGAACGAGCATTCTCGTTAGGTGTGAGTCAATATATGGGTAAACCTTTCCAAGAAGAAGAGTTACTAGAGAATATTG
ATGCTTTACTTGTAGCGTTTGAAAGTGAGGTCAAATCATGA


Secondary structure


Protein secondary structures were predicted by S4PRED and visualized by seqviz.



3D structure


Source ID Structure

Transmembrane helices


Transmembrane helices of protein were predicted by TMHMM 2.0 and visualized by seqviz and ECharts.



Visualization of predicted probability:


Similar proteins


Only experimentally validated proteins are listed.

Protein Organism Identities (%) Coverage (%) Ha-value
  chpA Acinetobacter baumannii strain A118

98.34

100

0.983