Detailed information    

insolico Bioinformatically predicted

Overview


Name   chpA   Type   Regulator
Locus tag   GA693_RS08170 Genome accession   NZ_CP045198
Coordinates   1623332..1627825 (-) Length   1497 a.a.
NCBI ID   WP_160241099.1    Uniprot ID   -
Organism   Acinetobacter indicus strain TQ23     
Function   regulation of type IV pilus assembly (predicted from homology)   
Competence regulation

Genomic Context


Location: 1618332..1632825
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  GA693_RS08140 elsL 1619388..1619918 (-) 531 WP_104488696.1 cell wall-recycling L,D-carboxypeptidase ElsL -
  GA693_RS08145 - 1619915..1620304 (-) 390 WP_075167111.1 YbaN family protein -
  GA693_RS08150 - 1620395..1621297 (+) 903 WP_160241100.1 DUF1853 family protein -
  GA693_RS08155 - 1621398..1621544 (+) 147 WP_005179532.1 entericidin A/B family lipoprotein -
  GA693_RS08160 dapE 1621671..1622804 (+) 1134 WP_005179534.1 succinyl-diaminopimelate desuccinylase -
  GA693_RS08165 - 1622874..1623335 (-) 462 WP_075167114.1 hypothetical protein -
  GA693_RS08170 chpA 1623332..1627825 (-) 4494 WP_160241099.1 Hpt domain-containing protein Regulator
  GA693_RS08175 - 1627982..1630054 (-) 2073 WP_160241098.1 methyl-accepting chemotaxis protein -
  GA693_RS08180 - 1630100..1630636 (-) 537 WP_005179538.1 chemotaxis protein CheW -
  GA693_RS08185 - 1630640..1631008 (-) 369 WP_005179539.1 PleD family two-component system response regulator -
  GA693_RS08190 pilG 1631025..1631408 (-) 384 WP_005179541.1 twitching motility response regulator PilG Regulator
  GA693_RS08195 - 1631738..1632331 (+) 594 WP_171525083.1 hypothetical protein -

Sequence


Protein


Download         Length: 1497 a.a.        Molecular weight: 166879.25 Da        Isoelectric Point: 4.2927

>NTDB_id=392606 GA693_RS08170 WP_160241099.1 1623332..1627825(-) (chpA) [Acinetobacter indicus strain TQ23]
MKEILKNLVETTALPEDSYLDQDAEILEIFVEEIEEIFVELKDLLAQWATQPNDQETLTTIRRHFHTLKGSGRMVGAKSA
GELAWTVEDTLNRVISGSLTLSAQVQQFATAVANVFEYKLYPSFKHAQPMALDLRPLVLLGQQLQQNLSPEPALEELLQL
ASSLRSSDSITGLEFDTASTDEQVAADTELAVADSVEEDPLAAETLAIFIEEAEEHLLTVDRFLAHDELKTQDYNGLIRA
LHTLRGSSSMAHIEQIFDASSKVENLFKTLLQDEIESTSKETALLLQYAEFVRDYLHLLPQNDSAGMDRIYQTFNTAWQN
YGFSLEDVDESVNPQGLVSKLIELNIDQLLDAEFEFDQRAQAEYPEYIQTLSHQAKLLVERTDNRASQGIHDFTQELQLA
YAALLDKPSLLHSDYAFELFGQAHQEFIHLFDTLAAGQRVSLSEDAQQIINNLSAFVQQDIEALSPETDTTEAVTETVEA
GAGLNLAVLSQRLEADRQYMDSAEANKDFDPDLLDIFLEEAEELLTGIDQDVNSWSQDPSNTAALNNLMRHLHTLKGGAN
MIAASHIGLIAHHLETIYERIINRQMSASTALIQIIRLVQDNIADRIQTIREQQVDYPAQESLAILENISELAQGQLVEA
ESLAVAAEATSSADVQQSDASALEFELEQPAPAETAYTAPEDEQPDTSSEPVLEDAPTLAEQTIPTDAVSTTENDGEDNL
HSIVEETFLEEAEELLDTTESLLKQWFDHRSDRSILLQLQRAAHSLKGGARMAEIEPVAVIAYQLENTFEQFAVHQFNSN
AYDALLNTTVAWLKEAIFQRDYSNFDSLKASLESIEYVNATAQLPERFNTADLLAPSKTFEFVQGDGAEPPSMQGEWSET
AQLDNSNEMIRISADLVEKMIDLSGENAINRSRIEMELGQLGGTLNEMELAIKRLADQLRRMEGELESQIIAKHGDEHSR
YTDFDPLEMDQYSSLNQLSKSLAESASDLVDFKTTLADKIRDAEGLLLQQSRIQAEIQESLMRTRLVPFSRMLPRLQRIV
RQTSSTLNRPAELVVHNTEGELDRTILERLISPFEHMLRNAVDHGLEDAAVRKQAAKPEVGQIELNIGRQGTDVLISFTD
DGKGIDETKIHAKALSLGLIQPEQQLDKKEILQLIFHPGFSTAQAVTQISGRGVGLDVVQSEIKALGGHVEVDSELGKGT
TFSIRVPTTVAVSDALMVKVGDQQFAIPLAQIDRIVRISPSALESYFSSKDDYFKIDQQNYKLRYLSEFVANQPLPRLSN
IAHSLPVLLIKGNTGQTIALLVDQLIGSRGQIVMKPIGQQFSSVGSIAGATILGDGQVCLILDGQNIARQIQATQRIKHV
MEPREVQRRDTRRLVMIVDDSVTVRKVTSRLLERQGFDVVTAKDGVDAIEQLENVKPDLMLLDIEMPRMDGFEVTNLVRH
HDIHRDLPIIMITSRTGEKHRERAFSLGVTHYMGKPFQEAELLANIENILHSSEAKA

Nucleotide


Download         Length: 4494 bp        

>NTDB_id=392606 GA693_RS08170 WP_160241099.1 1623332..1627825(-) (chpA) [Acinetobacter indicus strain TQ23]
ATGAAAGAAATATTAAAAAATTTAGTTGAAACGACTGCGCTTCCTGAAGATAGTTATCTTGATCAAGATGCAGAAATTCT
AGAAATTTTTGTTGAAGAAATTGAAGAAATCTTCGTTGAGCTAAAAGACCTGTTGGCTCAATGGGCCACGCAGCCTAACG
ATCAGGAAACGCTAACCACCATTCGCCGTCATTTTCATACCTTAAAAGGTTCTGGACGCATGGTTGGGGCCAAGTCGGCA
GGAGAGCTGGCCTGGACGGTTGAAGATACCTTAAACCGGGTCATTTCCGGTAGCCTGACCCTGTCAGCGCAGGTGCAGCA
GTTTGCAACCGCGGTGGCGAACGTCTTTGAATACAAACTTTATCCAAGCTTTAAACATGCTCAGCCGATGGCACTAGACC
TGCGTCCATTGGTGCTATTAGGACAACAATTACAACAAAATTTAAGTCCTGAACCGGCTTTAGAAGAGCTGTTACAACTG
GCAAGCAGCCTAAGGTCCAGCGACAGTATCACCGGTCTGGAGTTTGATACAGCAAGTACTGATGAGCAGGTTGCTGCAGA
CACCGAGCTGGCTGTGGCTGATAGTGTTGAAGAAGATCCGCTAGCAGCTGAAACACTGGCCATCTTTATTGAAGAAGCGG
AAGAACACCTGTTAACGGTGGACCGCTTCCTGGCACATGATGAGCTGAAAACTCAAGATTACAATGGCCTGATTCGTGCC
CTGCATACCTTGCGCGGCAGTTCATCCATGGCACACATCGAGCAGATTTTTGATGCCAGCTCCAAGGTCGAAAACCTGTT
CAAGACCCTGTTGCAGGATGAAATTGAATCGACCTCTAAAGAAACCGCACTGTTGCTGCAATATGCTGAATTTGTGCGGG
ATTATCTGCATCTGTTGCCGCAGAATGACAGTGCCGGCATGGACCGGATTTATCAGACCTTCAATACTGCATGGCAGAAC
TATGGCTTTAGCCTGGAAGATGTTGATGAATCAGTGAATCCGCAAGGTCTGGTATCCAAGCTGATTGAACTGAATATTGA
TCAGTTGCTCGATGCTGAGTTCGAATTTGACCAGCGTGCGCAGGCTGAATATCCGGAATATATCCAGACCCTGAGCCATC
AGGCGAAGCTGCTGGTAGAGCGTACCGATAACCGCGCCTCTCAGGGTATTCATGATTTTACCCAGGAATTACAACTGGCC
TATGCGGCCTTGCTGGACAAGCCAAGCCTGCTGCATAGCGATTATGCCTTTGAATTATTTGGACAGGCGCATCAGGAATT
TATCCATCTGTTTGATACCCTGGCTGCCGGGCAACGCGTCAGCTTAAGCGAAGATGCTCAGCAGATCATCAATAACCTGA
GTGCCTTTGTACAGCAGGATATTGAAGCACTAAGCCCAGAAACTGATACCACAGAAGCTGTAACCGAAACGGTTGAAGCC
GGTGCTGGGCTGAATCTGGCCGTATTGTCACAGCGTCTGGAAGCTGACCGTCAATACATGGATAGTGCTGAAGCCAACAA
GGACTTTGATCCAGACCTGCTGGACATTTTCCTGGAAGAGGCCGAAGAGTTACTTACGGGTATTGACCAGGATGTTAACA
GCTGGAGCCAAGACCCGAGCAATACTGCTGCGCTGAACAATCTGATGCGCCATTTGCACACCTTAAAAGGTGGTGCCAAC
ATGATTGCAGCCAGCCATATCGGTCTGATTGCGCACCATTTAGAAACCATTTATGAGCGCATCATTAACCGTCAGATGAG
CGCATCGACCGCATTGATTCAGATTATCCGTTTGGTTCAGGACAATATTGCGGACCGTATCCAGACCATCCGTGAACAGC
AGGTCGATTATCCGGCGCAAGAATCACTGGCGATTCTGGAAAATATTAGCGAACTGGCCCAAGGTCAACTGGTTGAAGCT
GAATCGCTGGCAGTGGCGGCTGAAGCAACCTCTAGCGCAGATGTACAACAGTCTGATGCATCTGCACTTGAGTTTGAACT
GGAACAGCCAGCACCTGCAGAAACAGCCTATACTGCGCCTGAAGATGAGCAGCCAGACACCAGCAGCGAACCGGTACTGG
AAGATGCACCGACCCTGGCTGAGCAAACCATCCCTACAGATGCGGTATCTACTACTGAAAATGACGGTGAAGACAATCTG
CATTCGATTGTGGAAGAAACCTTCCTGGAAGAAGCTGAAGAGCTGCTCGACACCACAGAAAGCCTGTTAAAGCAGTGGTT
TGACCATCGTAGTGACCGAAGCATTTTGCTGCAGTTACAACGTGCTGCGCACAGCCTGAAAGGCGGCGCGCGTATGGCCG
AAATCGAGCCGGTGGCCGTGATTGCCTATCAGCTGGAAAATACCTTTGAACAGTTCGCGGTGCATCAGTTTAATTCCAAT
GCCTATGATGCCTTGCTGAACACCACTGTGGCCTGGTTAAAAGAAGCCATCTTCCAGCGCGATTACAGCAATTTTGATAG
CCTGAAAGCCAGCCTGGAGTCGATTGAATACGTCAATGCGACGGCGCAGCTGCCAGAACGCTTCAATACCGCCGATCTGC
TGGCGCCAAGCAAAACCTTCGAATTTGTGCAGGGTGATGGTGCCGAGCCGCCATCCATGCAGGGTGAATGGAGCGAAACC
GCACAGCTGGATAACAGCAATGAGATGATCCGTATTTCGGCTGATCTGGTTGAGAAGATGATTGACCTGTCGGGTGAAAA
CGCGATTAACCGCTCGCGAATCGAGATGGAGCTGGGTCAGCTGGGCGGTACCCTGAATGAAATGGAACTGGCGATTAAAC
GTCTGGCCGATCAGTTACGCCGAATGGAAGGCGAGCTGGAAAGCCAGATTATTGCCAAACATGGTGATGAACATTCACGC
TATACCGACTTCGACCCGCTGGAGATGGACCAGTACTCCTCCTTGAACCAGCTGTCGAAATCGTTGGCGGAATCGGCGTC
GGACTTGGTGGACTTTAAGACCACGCTGGCGGACAAGATTCGTGATGCTGAAGGTCTGTTACTGCAACAGTCGCGGATTC
AGGCAGAAATTCAGGAAAGCCTGATGCGCACCCGTCTGGTACCGTTCTCGCGCATGTTGCCACGTTTACAGCGGATTGTG
CGTCAGACTTCATCGACCTTAAACCGTCCTGCCGAGCTGGTGGTACACAATACCGAAGGCGAGCTGGACCGGACTATTCT
GGAACGCCTGATTTCACCATTTGAACACATGCTGCGTAATGCGGTGGACCATGGTCTGGAAGATGCCGCTGTACGTAAAC
AGGCAGCGAAGCCGGAAGTGGGCCAGATTGAGCTGAACATTGGCCGTCAGGGTACCGATGTACTGATTAGCTTTACCGAT
GATGGTAAAGGTATTGATGAAACCAAAATTCACGCCAAAGCCCTGAGCCTTGGCCTGATTCAGCCAGAGCAGCAGCTGGA
CAAGAAAGAAATTCTGCAGCTGATTTTCCATCCGGGCTTTAGTACCGCACAAGCCGTGACCCAGATTTCAGGTCGTGGCG
TCGGTCTGGACGTGGTGCAAAGCGAAATTAAAGCGCTGGGCGGCCATGTCGAGGTCGATTCTGAACTCGGTAAAGGCACT
ACTTTCAGTATTCGCGTACCGACCACAGTGGCGGTATCCGATGCCTTGATGGTAAAAGTTGGCGATCAGCAGTTCGCAAT
TCCATTGGCGCAAATTGACCGTATTGTACGAATTTCACCTTCTGCGCTGGAAAGTTACTTCAGCAGCAAAGATGACTACT
TCAAGATTGATCAGCAAAACTATAAGTTGCGCTATCTGTCCGAGTTTGTTGCCAATCAGCCATTGCCGCGTTTAAGCAAT
ATCGCGCATTCATTGCCGGTGCTGCTGATTAAAGGCAATACTGGTCAGACCATTGCCTTACTGGTCGATCAGCTGATTGG
TTCACGTGGCCAGATTGTGATGAAACCGATTGGCCAGCAGTTCTCCAGCGTGGGTTCGATTGCCGGCGCGACCATTCTCG
GTGATGGTCAGGTCTGTCTGATTCTGGATGGTCAGAATATTGCCCGTCAGATTCAGGCAACCCAGCGCATCAAGCATGTG
ATGGAGCCGCGTGAAGTACAGCGTCGTGATACCCGTCGTCTGGTGATGATTGTGGATGACTCGGTGACCGTACGTAAGGT
CACGTCACGTCTGCTCGAACGTCAGGGCTTTGATGTGGTCACGGCCAAAGACGGTGTCGATGCGATTGAGCAGCTGGAAA
ATGTCAAACCGGATCTGATGCTGCTGGATATTGAAATGCCGCGTATGGATGGCTTTGAGGTGACCAACCTGGTACGCCAC
CATGACATCCATCGTGACTTGCCAATTATCATGATTACCTCGCGTACCGGTGAAAAACACCGCGAACGTGCCTTTAGCTT
GGGGGTAACGCACTATATGGGTAAACCGTTCCAGGAAGCAGAATTGCTTGCCAATATTGAAAACATTTTGCATAGCAGTG
AGGCTAAAGCATGA


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

61.231

100

0.625


Multiple sequence alignment