Detailed information    

insolico Bioinformatically predicted

Overview


Name   chpA   Type   Regulator
Locus tag   GK020_RS11505 Genome accession   NZ_CP046392
Coordinates   2368255..2372745 (-) Length   1496 a.a.
NCBI ID   WP_156189313.1    Uniprot ID   -
Organism   Acinetobacter indicus strain WMB-7     
Function   regulation of type IV pilus assembly (predicted from homology)   
Competence regulation

Genomic Context


Location: 2363255..2377745
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  GK020_RS11475 elsL 2364311..2364841 (-) 531 WP_005179524.1 cell wall-recycling L,D-carboxypeptidase ElsL -
  GK020_RS11480 - 2364838..2365227 (-) 390 WP_104988308.1 YbaN family protein -
  GK020_RS11485 - 2365318..2366220 (+) 903 WP_156189311.1 DUF1853 family protein -
  GK020_RS11490 - 2366321..2366467 (+) 147 WP_005179532.1 entericidin A/B family lipoprotein -
  GK020_RS11495 dapE 2366594..2367727 (+) 1134 WP_087662226.1 succinyl-diaminopimelate desuccinylase -
  GK020_RS11500 - 2367797..2368258 (-) 462 WP_156189312.1 hypothetical protein -
  GK020_RS11505 chpA 2368255..2372745 (-) 4491 WP_156189313.1 Hpt domain-containing protein Regulator
  GK020_RS11510 - 2372902..2374974 (-) 2073 WP_156189314.1 methyl-accepting chemotaxis protein -
  GK020_RS11515 - 2375020..2375556 (-) 537 WP_005179538.1 chemotaxis protein CheW -
  GK020_RS11520 - 2375560..2375928 (-) 369 WP_005179539.1 PleD family two-component system response regulator -
  GK020_RS11525 pilG 2375945..2376328 (-) 384 WP_005179541.1 twitching motility response regulator PilG Regulator
  GK020_RS11530 - 2376658..2377251 (+) 594 WP_171525083.1 hypothetical protein -

Sequence


Protein


Download         Length: 1496 a.a.        Molecular weight: 166964.57 Da        Isoelectric Point: 4.3025

>NTDB_id=403806 GK020_RS11505 WP_156189313.1 2368255..2372745(-) (chpA) [Acinetobacter indicus strain WMB-7]
MKEILKNLVETTALPEDSYLDQDAEILEIFVEEIEEIFVELKDLLAQWVKQPNDQETLTTIRRHFHTLKGSGRMVGAKSA
GELAWTVEDTLNRVISGSLTLSAQVQQFATTVANVFEYKLYPSFKHAQPMALDLRPLVLLGQQLQQNLSPEPALEELLQL
ASSLTSSDSITGLEFDTASTDEQVAVDTELAVADSVEEDPLAAETLAIFIEEAEEHLLTVDRFLAHDELKTQDYNGLIRA
LHTLRGSSSMAHIEQIFDASSKVENLFKTLLQDEIESTSKETALLLQYAEFVRDYLHLLPQNNSTGMDRIYQTFNTAWQN
YGFSLEDVDESVNPQGLVSKLIELNIDQLLDAEFEFDQRAQAEYPEYIQTLSHQAKLLVERTDNRASQGIYDFTQELQLA
YAALLDKPSLLHSDYAFELFGQAHQEFIHLFDTLAAGQRVSLSEDAQQIINNLSAFVQQDIEALSPETDTTEAVTETAEA
GAGLNLAVLSQRLEADRQYMDSAEANKDFDPDLLDIFLEEAEELLTGIDQDVNSWSQDPSNTATLNNLMRHLHTLKGGAN
MIAASHIGLIAHHLETIYERIINRQMSASIALIQIIRLVQDNIADRIQTIREQQVDYPAQESLAILENISELAQGQLVEA
ESLAVAAEATSSADRQQSDAAALEFELEPAPAEIAYAAPEDEQQPDISSEPVLEDVPTLAEQTIPTDAVSATNDSEDNLH
SIVEESFLEEAEELLDTTESLLKQWFDHRSDRSILLQLQRAAHSLKGGARMAEIDLVAVIAYQLENTFEQFAVHQFNSNA
YDALLNTTVAWLKEAIFQRDYSNFDSLKASLESIEYVNATVQLPERFNATDLLAPSKTFEFVQGDGAEPPSMQGEWSETA
QLDNSNEMIRISADLVEKMIDLSGENAINRSRIEMELGQLGGTLNEMELAIKRLADQLRRMEGELESQIIAKHGDEHSRY
TDFDPLEMDQYSSLNQLSKSLAESASDLVDFKTTLADKIRDAEGLLLQQSRIQAEIQESLMRTRLVPFSRMLPRLQRIVR
QTSSTLNRPAELVVHNTEGELDRTILERLISPFEHMLRNAVDHGLEDAAVRKQAAKPEVGQIELNIGRQGTDVLISFTDD
GKGIDETKIHAKALSLGLIQPEQQLDKKEILQLIFHPGFSTAQAVTQISGRGVGLDVVQSEIKALGGHVEVDSELGKGTT
FNIRVPTTVAVSDALMVKVGDQQFAIPLAQIDRIVRISPSALESYFSSKDDYFKIDQQNYKLRYLSEFVANQPLPRLSNI
AHSLPVLLIKGNTGQTIALLVDQLIGSHGQIVMKPIGQQFSSVGSIAGATILGDGQVCLILDGQNIARQIQATQRIKHVM
EPREVQRRDTRRLVMIVDDSVTVRKVTSRLLERQGFDVVTAKDGVDAIEQLENVKPDLMLLDIEMPRMDGFEVTNLVRHH
DIHRDLPIIMITSRTGEKHRERAFSLGVTHYMGKPFQEAELLANIENILHSSEAKA

Nucleotide


Download         Length: 4491 bp        

>NTDB_id=403806 GK020_RS11505 WP_156189313.1 2368255..2372745(-) (chpA) [Acinetobacter indicus strain WMB-7]
ATGAAAGAAATATTAAAAAATTTAGTTGAAACGACTGCGCTTCCTGAAGATAGTTATCTTGATCAAGATGCAGAAATTCT
AGAAATTTTTGTTGAAGAAATTGAAGAAATCTTCGTTGAGCTAAAAGACCTGTTGGCTCAATGGGTCAAGCAGCCTAACG
ATCAGGAAACGCTAACCACCATTCGCCGTCATTTTCATACCTTAAAAGGTTCGGGACGCATGGTTGGGGCCAAGTCGGCA
GGGGAGCTGGCCTGGACGGTTGAAGATACCTTAAACCGGGTCATTTCCGGTAGTTTGACCTTGTCAGCGCAGGTGCAGCA
GTTTGCAACCACGGTGGCGAACGTCTTTGAATACAAACTTTATCCAAGCTTTAAACATGCTCAGCCGATGGCACTGGACC
TGCGTCCATTGGTGCTGTTAGGACAACAATTACAACAAAATTTAAGTCCTGAACCGGCCTTAGAAGAACTTCTACAACTG
GCGAGCAGCTTAACATCCAGCGACAGTATTACTGGTCTAGAGTTTGATACAGCAAGCACTGATGAGCAGGTTGCTGTAGA
CACCGAGCTGGCTGTGGCTGATAGTGTTGAAGAAGATCCGCTAGCAGCTGAAACACTGGCCATCTTTATTGAAGAAGCGG
AAGAACACCTGTTAACGGTGGACCGCTTCCTGGCACACGATGAGCTGAAAACCCAGGATTACAATGGCCTGATTCGTGCC
CTGCATACCTTGCGCGGCAGTTCATCCATGGCACACATCGAGCAGATTTTTGATGCCAGCTCCAAGGTCGAAAACCTGTT
CAAGACCTTGTTGCAGGATGAAATTGAATCGACCTCCAAAGAAACCGCACTGTTATTGCAATATGCTGAATTTGTGCGAG
ATTATCTGCATCTGTTGCCACAGAATAACAGTACCGGCATGGACCGGATTTATCAGACCTTCAATACTGCATGGCAGAAC
TACGGCTTTAGCCTGGAAGATGTCGATGAGTCAGTGAATCCGCAAGGTTTGGTATCCAAGCTGATTGAACTGAATATTGA
TCAGTTACTCGATGCCGAGTTCGAATTTGACCAGCGTGCGCAGGCTGAATATCCGGAATATATCCAGACCCTGAGCCATC
AGGCGAAGCTACTGGTAGAGCGTACCGATAACCGTGCCTCTCAGGGTATTTATGATTTTACCCAGGAATTACAACTGGCC
TATGCAGCCTTGCTGGACAAGCCAAGCCTGCTGCATAGCGATTATGCCTTTGAATTATTTGGACAGGCGCATCAGGAATT
TATCCATCTGTTTGATACCCTGGCTGCCGGGCAACGCGTCAGCTTAAGCGAGGATGCCCAGCAGATCATCAATAACCTGA
GTGCCTTTGTACAGCAGGATATTGAAGCGCTAAGCCCAGAAACTGATACCACAGAAGCTGTAACCGAAACGGCTGAAGCC
GGTGCAGGGCTGAATCTGGCTGTATTGTCACAGCGTCTGGAAGCTGACCGTCAATACATGGACAGCGCTGAGGCCAACAA
GGACTTTGATCCAGACCTGCTGGACATTTTCCTGGAAGAGGCCGAAGAGTTACTCACGGGTATTGACCAGGATGTTAATA
GCTGGAGCCAAGATCCGAGCAATACTGCTACGCTGAACAATCTGATGCGCCATCTGCACACCTTAAAAGGTGGCGCCAAC
ATGATTGCGGCCAGCCATATTGGTCTGATTGCGCACCATTTAGAAACCATTTATGAGCGCATCATTAACCGTCAGATGAG
CGCATCGATCGCATTGATTCAGATTATCCGTCTGGTTCAGGACAATATTGCGGACCGTATCCAGACCATCCGTGAACAGC
AAGTCGATTATCCGGCGCAGGAATCACTGGCGATTCTGGAAAATATTAGCGAACTGGCCCAAGGTCAACTGGTTGAAGCT
GAATCACTGGCAGTGGCGGCTGAAGCAACCTCTAGCGCAGATAGACAACAGTCTGATGCAGCTGCACTTGAATTTGAGCT
GGAACCAGCACCTGCAGAAATAGCCTATGCTGCGCCTGAAGATGAGCAGCAGCCAGATATTAGCAGCGAACCGGTACTGG
AAGATGTACCGACCCTGGCCGAGCAAACCATCCCTACAGACGCGGTATCTGCTACAAATGACAGCGAAGATAATCTGCAT
TCGATCGTGGAAGAAAGCTTCCTGGAAGAAGCCGAAGAGCTGCTCGACACTACAGAAAGCCTGTTAAAGCAGTGGTTTGA
CCATCGTAGTGACCGGAGCATTTTGCTGCAGTTACAACGTGCTGCGCACAGTCTGAAAGGCGGCGCGCGTATGGCCGAAA
TCGACCTGGTGGCCGTGATTGCCTATCAGCTGGAAAATACCTTTGAACAGTTCGCAGTGCATCAGTTTAATTCCAATGCC
TATGATGCCTTGCTCAACACCACTGTGGCCTGGTTAAAAGAAGCCATCTTCCAGCGCGATTACAGCAACTTTGACAGCCT
GAAAGCCAGCCTGGAGTCGATTGAATACGTCAATGCGACGGTACAGCTGCCAGAACGCTTTAATGCCACCGATTTGCTGG
CACCAAGCAAAACCTTCGAATTTGTGCAGGGTGATGGTGCCGAGCCGCCATCCATGCAGGGCGAATGGAGCGAAACTGCA
CAGCTGGATAACAGCAATGAGATGATCCGTATTTCGGCTGATCTGGTTGAGAAGATGATTGACCTCTCGGGTGAAAACGC
GATTAACCGTTCGCGAATCGAGATGGAGCTGGGGCAGCTGGGCGGTACCCTGAATGAAATGGAACTGGCGATTAAACGTC
TGGCCGATCAGTTACGCCGAATGGAAGGCGAGCTGGAAAGCCAGATTATTGCCAAACATGGCGATGAACATTCACGCTAT
ACCGACTTCGACCCGCTGGAGATGGACCAGTATTCATCCTTGAACCAGCTGTCGAAATCGTTGGCGGAATCGGCGTCGGA
CTTGGTGGATTTTAAGACCACGCTGGCGGACAAGATTCGTGATGCCGAAGGTCTGTTACTGCAACAGTCGCGGATTCAGG
CAGAAATTCAGGAAAGCCTGATGCGCACCCGTCTGGTACCGTTCTCGCGCATGTTGCCACGTTTACAGCGGATTGTGCGT
CAGACTTCATCGACCTTAAACCGTCCTGCCGAGCTGGTGGTGCACAATACCGAAGGCGAACTGGACCGGACCATTTTGGA
ACGCCTGATTTCGCCGTTTGAACACATGCTGCGTAATGCGGTGGACCATGGTCTGGAAGATGCTGCTGTACGTAAACAGG
CTGCGAAGCCGGAAGTGGGCCAGATTGAGCTGAACATTGGCCGTCAGGGCACTGATGTACTGATTAGCTTTACCGATGAT
GGTAAAGGAATTGATGAAACCAAGATTCACGCCAAAGCCCTGAGCCTTGGCCTGATTCAGCCAGAACAGCAGCTGGACAA
GAAAGAAATTCTGCAGCTGATTTTCCATCCGGGCTTTAGTACCGCACAAGCCGTGACCCAAATTTCGGGTCGTGGCGTCG
GTCTGGACGTGGTGCAAAGCGAAATTAAGGCGCTGGGCGGCCATGTCGAGGTCGATTCTGAACTCGGTAAAGGCACTACT
TTCAATATTCGCGTACCGACCACAGTGGCGGTATCCGATGCCCTGATGGTAAAAGTTGGCGATCAGCAGTTCGCGATTCC
ATTGGCGCAAATTGACCGTATTGTACGAATTTCGCCTTCTGCACTGGAAAGTTACTTCAGCAGTAAAGATGACTACTTCA
AGATTGATCAGCAGAACTATAAGTTGCGCTATCTGTCCGAGTTTGTCGCCAACCAGCCATTGCCGCGTTTAAGCAATATC
GCGCATTCATTGCCGGTGCTGCTGATTAAGGGCAATACCGGTCAGACCATTGCCTTATTGGTCGATCAGCTGATTGGTTC
GCATGGCCAGATTGTGATGAAACCGATTGGTCAGCAGTTCTCCAGCGTGGGCTCGATTGCCGGCGCGACCATTCTCGGTG
ATGGTCAGGTCTGTCTGATTCTGGATGGTCAGAATATTGCCCGTCAGATTCAGGCCACCCAGCGCATCAAGCATGTGATG
GAGCCGCGTGAAGTACAGCGTCGTGATACCCGTCGTCTGGTAATGATTGTGGATGACTCGGTGACCGTACGTAAGGTCAC
GTCACGTCTGCTCGAGCGTCAGGGCTTTGATGTCGTCACCGCCAAAGACGGTGTTGATGCGATTGAGCAGCTGGAAAATG
TTAAACCGGATCTGATGCTGCTGGATATTGAAATGCCGCGTATGGATGGTTTTGAGGTGACCAACCTGGTACGCCACCAT
GACATCCATCGTGACTTGCCAATTATCATGATTACCTCGCGTACCGGTGAAAAACACCGCGAACGTGCCTTTAGCTTGGG
GGTAACGCACTATATGGGTAAACCGTTCCAGGAAGCAGAATTGCTTGCCAATATTGAAAACATTTTGCATAGCAGTGAGG
CTAAAGCATGA


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

60.726

100

0.615


Multiple sequence alignment