Detailed information    

insolico Bioinformatically predicted

Overview


Name   chpA   Type   Regulator
Locus tag   BEN74_RS07260 Genome accession   NZ_CP032279
Coordinates   1176268..1180623 (-) Length   1451 a.a.
NCBI ID   WP_068907268.1    Uniprot ID   A0A3B7PR02
Organism   Acinetobacter sp. WCHAc010034     
Function   regulation of type IV pilus assembly (predicted from homology)   
Competence regulation

Genomic Context


Location: 1171268..1185623
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  BEN74_RS07230 (BEN74_07230) elsL 1172404..1172895 (-) 492 WP_068907281.1 cell wall-recycling L,D-carboxypeptidase ElsL -
  BEN74_RS07235 (BEN74_07235) - 1172892..1173311 (-) 420 WP_068907279.1 YbaN family protein -
  BEN74_RS07240 (BEN74_07240) - 1173398..1174264 (+) 867 WP_068907276.1 DUF1853 family protein -
  BEN74_RS07245 (BEN74_07245) - 1174359..1174499 (+) 141 WP_068907274.1 entericidin A/B family lipoprotein -
  BEN74_RS07250 (BEN74_07250) dapE 1174615..1175751 (+) 1137 WP_068907272.1 succinyl-diaminopimelate desuccinylase -
  BEN74_RS07255 (BEN74_07255) - 1175818..1176264 (-) 447 WP_068907270.1 hypothetical protein -
  BEN74_RS07260 (BEN74_07260) chpA 1176268..1180623 (-) 4356 WP_068907268.1 Hpt domain-containing protein Regulator
  BEN74_RS07265 (BEN74_07265) - 1180796..1182868 (-) 2073 WP_068907266.1 methyl-accepting chemotaxis protein -
  BEN74_RS07270 (BEN74_07270) - 1182911..1183447 (-) 537 WP_068907264.1 chemotaxis protein CheW -
  BEN74_RS07275 (BEN74_07275) - 1183454..1183822 (-) 369 WP_068907262.1 response regulator -
  BEN74_RS07280 (BEN74_07280) pilG 1183849..1184232 (-) 384 WP_068907259.1 twitching motility response regulator PilG Regulator
  BEN74_RS07285 (BEN74_07285) - 1184512..1185159 (+) 648 WP_068907256.1 hypothetical protein -

Sequence


Protein


Download         Length: 1451 a.a.        Molecular weight: 160334.60 Da        Isoelectric Point: 4.3898

>NTDB_id=314695 BEN74_RS07260 WP_068907268.1 1176268..1180623(-) (chpA) [Acinetobacter sp. WCHAc010034]
MKEILKNLVETTTLPEDSYLDQDAEILEIFVEEIEEIFAELNSLFTGWLQAPHNQDMLTTIRRHFHTLKGSGRMVGAKSA
GETAWMVEDALNRVISGALALTPVIQKYAQAVLNVYQYKLYPRFKAVEELDVDLRPLVLLGQQLQQGLSPEPALEELLSL
ADTLTAADGITGLELAEAAAPAGQAASAGEDSYIEETVSIFIEEAEEHLHAIDQFLKTEDEKVQDYNGLIRALHTLRGSS
SMAQIDQVFEASTRVENLFKTLLQEEIVSTSQETALLIQYAEFVRDYLHTLRGGPASQLDAIYETFNTAWHDYGFAAEDV
DQDANPQGLVSKLIELNIDQLLDAEFEFDSRAKAEFPQYLRALSAQAQQLLEHTDNRASTGIHDFTSELKQGYDALAEKL
QLLNLDYGYELFAQAHQEFIHLFDTLAAGQRVVLSAEAQKLLGELSAFVQQDIEQAAAPDQAPEAAVDFAQLSQRIASDR
GQQRSAEANTDFDSELLEIFLEEADELLAGIDQDLSTWSKDQSNIGALNNLMRYLHTLKGGANMISASHIGLIAHELEFV
YERIIRQQISISPALIQIIRLVQDDVADRIQIIRDKQIDYPAPATIDIIQNIQALAAGHASDAHAAPEAAPAAEEPAAED
ITLPAAEEVSAPAEPAVAAEAPAPSEAAFSEDDTLRAVVEETFLEEAEEVLAAAEQLLAQWFEQRTDRSILLQLQRAAHS
IKGGARMVENEPVAAISYQLETTFEQFAVHHFSSNAYDVLLQTTVSWLKQAIFEKDYSNFDSIRLSLESIELVDLTAQLP
NRTGKSAQPAAALGFEFIQGDGAEPPSMQGEWKDALNAGSSNEMIRISADLVEKMIDLSGENSINRSRIEMDLGQLGNTL
NEMELAIKRLADQLRRMDGELESQILAKHGTDNSRYEDFDPLEMDQYSSLNQLSKSLAESASDLVDFKSTLAEKIRDAEG
LLLQQSRIQAEIQESLMRTRLVPFSRMLPRLQRIVRQTSSTLNRPAELIVQNTEGELDRTILERLVTPFEHMLRNAIDHG
LEDTAERLALHKPEVGSIVLNISRQGTDVLVSFSDDGKGINEEVIKAKALSQGLIKADQFLDKQEILQLIFHPGLSTAKQ
VTQISGRGVGLDVVQSEIKALGGHVSVDSELGQGTTFTIRVPTTVAVSDALMVKAGDQQFAISLAQIDRIVRISPSALEE
YFSSKADVFKIDNASYKLRYLSEFVSNQPIPRLGSVAHSLPVLLIKGNSGQTIALLVDQLIGSRAQIVVKPIGQQFSNVG
AIAGATILGDGQVCLILDGQSIARQIQATQRVKRGSDQRDHSRRGNARRLVMIVDDSVTVRKVTSRLLERQGYDVVTAKD
GVDAMEQLENVRPDLMLLDIEMPRMDGFEVTNLVRHHDIHQDLPIIMITSRTGEKHRERAFSLGATHYMGKPFQEAELLA
NIESLIAEKQG

Nucleotide


Download         Length: 4356 bp        

>NTDB_id=314695 BEN74_RS07260 WP_068907268.1 1176268..1180623(-) (chpA) [Acinetobacter sp. WCHAc010034]
ATGAAAGAAATATTAAAAAATTTAGTAGAAACGACTACGCTTCCGGAAGATAGCTATCTAGATCAAGATGCAGAAATTCT
AGAGATTTTTGTTGAAGAAATAGAGGAAATCTTTGCTGAATTAAATTCTTTATTTACGGGTTGGCTGCAAGCGCCGCATA
ACCAAGACATGCTGACTACGATTCGCCGTCATTTCCATACCTTAAAAGGCTCGGGCCGCATGGTGGGGGCAAAATCTGCC
GGTGAAACTGCATGGATGGTGGAAGATGCCCTGAACCGGGTGATTTCAGGCGCGCTTGCGCTGACGCCGGTCATTCAGAA
ATATGCTCAAGCCGTGCTGAATGTCTATCAGTACAAGCTGTATCCGCGCTTTAAAGCCGTGGAAGAGCTGGATGTTGATT
TGCGTCCGCTGGTGCTGCTGGGGCAGCAGCTGCAGCAGGGCCTGAGCCCTGAGCCGGCTCTGGAAGAGTTGCTGAGTCTT
GCCGATACGCTGACTGCAGCGGACGGCATAACCGGCCTTGAACTGGCCGAAGCGGCGGCTCCGGCCGGGCAGGCTGCCAG
CGCTGGCGAAGACAGCTATATTGAAGAAACGGTTTCGATCTTTATTGAAGAAGCGGAAGAGCATTTGCATGCGATTGACC
AGTTCCTTAAAACAGAAGATGAAAAAGTTCAGGATTACAACGGTTTAATCCGCGCACTGCATACCTTGCGCGGCAGCTCG
TCGATGGCGCAGATTGATCAGGTATTTGAAGCGAGCACCAGGGTTGAAAACCTGTTTAAGACCCTGCTGCAGGAAGAAAT
TGTTTCGACCTCGCAGGAAACTGCGCTGCTGATCCAGTATGCGGAATTTGTCCGCGACTATCTGCACACCTTGCGCGGAG
GCCCAGCCAGCCAGCTGGATGCCATTTACGAAACATTCAATACCGCATGGCATGATTACGGCTTTGCTGCTGAAGATGTG
GATCAGGATGCCAATCCGCAAGGCTTGGTGTCGAAGCTGATTGAGCTGAATATTGACCAGCTGCTGGATGCCGAGTTTGA
ATTTGACAGCCGCGCCAAGGCTGAATTCCCGCAATACCTGCGCGCGCTCAGCGCTCAGGCGCAGCAGCTGCTGGAACATA
CGGATAACCGCGCTTCAACCGGTATTCATGACTTCACCTCGGAACTGAAGCAGGGCTACGATGCTCTTGCGGAAAAGCTG
CAGCTGCTGAACCTTGATTACGGCTATGAATTATTTGCCCAGGCGCATCAGGAATTCATTCATCTATTCGACACCTTGGC
TGCCGGACAGCGCGTGGTGTTAAGCGCGGAAGCGCAGAAATTGCTGGGCGAACTGTCCGCCTTTGTGCAGCAGGATATTG
AACAGGCCGCGGCGCCTGATCAGGCGCCGGAAGCCGCAGTTGATTTTGCGCAGCTCAGCCAGCGCATTGCATCTGACCGC
GGGCAGCAGCGCTCTGCTGAAGCCAATACCGACTTTGATTCAGAGCTGCTGGAAATTTTCCTTGAAGAAGCGGATGAGCT
GCTGGCCGGGATTGATCAGGACCTCAGCACATGGTCGAAAGACCAAAGCAATATCGGCGCTTTGAACAATCTGATGCGCT
ATTTGCACACCTTGAAAGGCGGCGCAAATATGATTTCAGCATCGCATATCGGCCTGATTGCGCATGAGCTGGAGTTCGTG
TATGAGCGCATTATCCGCCAGCAAATCAGCATCAGCCCGGCGCTGATCCAGATTATCCGCCTAGTGCAGGATGATGTGGC
TGACCGCATTCAAATTATCCGCGATAAGCAAATCGACTATCCGGCGCCTGCTACGATTGATATTATTCAGAATATTCAAG
CATTAGCTGCCGGACACGCCTCGGATGCGCATGCAGCGCCTGAAGCTGCGCCAGCGGCGGAAGAGCCGGCTGCGGAAGAT
ATTACGCTTCCTGCGGCTGAAGAAGTTTCTGCGCCAGCTGAGCCGGCTGTTGCTGCGGAAGCGCCGGCACCGTCAGAGGC
TGCTTTCTCTGAAGATGACACGCTGCGCGCAGTGGTTGAGGAAACCTTCCTTGAGGAAGCTGAGGAAGTGCTGGCGGCTG
CGGAGCAGCTGCTGGCGCAATGGTTTGAGCAGCGCACCGACCGAAGCATTTTGCTGCAGCTGCAGCGTGCGGCCCACAGT
ATTAAGGGCGGTGCGCGCATGGTGGAAAATGAGCCGGTGGCGGCCATTTCCTATCAGCTGGAAACTACCTTTGAACAGTT
TGCGGTGCATCATTTCAGCTCAAACGCCTATGATGTGCTGCTGCAGACCACCGTCAGCTGGCTGAAGCAGGCGATTTTTG
AGAAAGACTACAGCAATTTTGACAGCATCAGGCTGAGCCTGGAGTCAATTGAGCTGGTTGACCTGACTGCGCAGCTGCCG
AACCGCACCGGCAAGTCCGCTCAGCCGGCGGCCGCGCTGGGCTTTGAATTTATTCAGGGCGATGGCGCCGAACCGCCGTC
GATGCAGGGCGAGTGGAAAGATGCCTTAAATGCCGGCAGCAGCAATGAAATGATCCGGATCTCCGCTGATCTGGTTGAGA
AAATGATTGACCTTTCCGGCGAGAATTCAATCAACCGTTCGCGCATTGAAATGGATCTTGGCCAGCTGGGCAATACCCTG
AATGAAATGGAGCTGGCGATTAAGCGTCTGGCGGATCAGCTGCGCCGGATGGACGGCGAGCTGGAATCTCAGATTCTCGC
CAAGCATGGCACGGACAATTCGCGCTATGAGGACTTCGACCCTCTGGAAATGGACCAGTATTCATCCTTGAATCAGCTGT
CTAAGTCGCTCGCCGAGTCGGCTTCGGATTTGGTTGACTTCAAGAGCACGCTGGCGGAGAAAATCCGTGATGCGGAAGGC
CTGCTGCTGCAGCAGTCGCGTATTCAGGCTGAAATTCAGGAAAGCTTGATGCGCACGCGTCTGGTGCCGTTCTCGCGCAT
GCTGCCGCGCCTGCAGCGCATTGTGCGCCAGACCTCATCAACACTGAACCGCCCGGCGGAACTGATTGTGCAGAATACCG
AAGGCGAGCTGGACCGAACCATTCTGGAGCGGCTGGTGACGCCATTCGAGCATATGCTGCGCAACGCGATTGACCATGGC
TTGGAAGATACAGCAGAGCGCTTGGCGCTGCATAAGCCGGAAGTCGGCAGCATTGTGCTGAATATCAGCCGCCAGGGCAC
CGATGTACTGGTATCCTTCAGTGATGACGGCAAAGGCATCAATGAAGAGGTGATTAAGGCCAAGGCGCTGAGCCAGGGCC
TGATCAAAGCCGATCAGTTCCTCGACAAGCAGGAAATCCTGCAGCTGATTTTCCATCCGGGCCTCAGTACCGCCAAGCAG
GTGACGCAGATTTCCGGACGCGGCGTTGGCCTGGATGTAGTGCAAAGCGAAATCAAAGCCCTAGGCGGCCATGTTTCGGT
TGATTCGGAACTGGGCCAGGGCACGACCTTTACCATCCGCGTGCCGACCACTGTAGCGGTCAGCGACGCCCTGATGGTGA
AAGCCGGCGATCAGCAATTTGCGATTTCTTTGGCGCAGATTGACCGTATTGTCCGCATCTCGCCGTCTGCGCTGGAAGAG
TATTTCTCCAGCAAGGCGGATGTGTTCAAAATTGACAATGCCAGCTACAAGCTGCGCTACCTGTCGGAATTTGTTTCGAA
TCAGCCGATTCCGCGCTTAGGCAGCGTTGCGCATTCATTGCCGGTGCTGCTGATTAAGGGCAACAGCGGGCAAACTATCG
CTTTGCTGGTTGACCAGCTGATCGGTTCCCGCGCGCAGATTGTAGTGAAGCCGATTGGCCAGCAGTTCTCGAATGTCGGC
GCTATTGCAGGCGCGACGATTCTGGGCGACGGCCAAGTCTGCCTGATTTTGGACGGGCAAAGCATTGCCCGCCAGATTCA
AGCCACGCAGCGCGTTAAGCGCGGTTCGGATCAGCGCGATCATTCACGCCGCGGCAATGCCCGCCGCTTAGTGATGATCG
TGGATGACTCGGTTACGGTGCGTAAAGTGACTTCGCGCCTGCTGGAGCGCCAAGGCTATGATGTCGTCACCGCCAAAGAC
GGCGTGGATGCCATGGAGCAGCTGGAAAACGTAAGGCCGGATCTGATGCTGCTGGATATTGAAATGCCGCGCATGGACGG
TTTTGAAGTGACCAACCTGGTCCGCCATCATGACATTCATCAGGACTTGCCGATCATCATGATTACCTCGCGTACCGGCG
AGAAGCACCGCGAGCGCGCCTTCAGCCTGGGCGCAACGCACTATATGGGCAAGCCGTTCCAGGAAGCGGAACTGCTGGCC
AATATTGAAAGTTTAATTGCAGAAAAACAGGGGTAA


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

61.518

100

0.637


Multiple sequence alignment