Detailed information    

insolico Bioinformatically predicted

Overview


Name   chpA   Type   Regulator
Locus tag   KCV10_RS10910 Genome accession   NZ_CP073243
Coordinates   2308011..2312531 (+) Length   1506 a.a.
NCBI ID   WP_212510942.1    Uniprot ID   -
Organism   Acinetobacter seifertii strain S63-3     
Function   regulation of type IV pilus assembly (predicted from homology)   
Competence regulation

Genomic Context


Location: 2303011..2317531
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  KCV10_RS10885 - 2303450..2304088 (-) 639 WP_191012114.1 hypothetical protein -
  KCV10_RS10890 pilG 2304372..2304755 (+) 384 WP_000389061.1 twitching motility response regulator PilG Regulator
  KCV10_RS10895 - 2304779..2305141 (+) 363 WP_004705774.1 PleD family two-component system response regulator -
  KCV10_RS10900 - 2305199..2305735 (+) 537 WP_004705775.1 chemotaxis protein CheW -
  KCV10_RS10905 - 2305782..2307863 (+) 2082 WP_151761890.1 methyl-accepting chemotaxis protein -
  KCV10_RS10910 chpA 2308011..2312531 (+) 4521 WP_212510942.1 hybrid sensor histidine kinase/response regulator Regulator
  KCV10_RS10915 - 2312528..2312995 (+) 468 WP_004705778.1 hypothetical protein -
  KCV10_RS10920 - 2313198..2314589 (+) 1392 WP_212510943.1 coproporphyrinogen-III oxidase family protein -
  KCV10_RS10925 - 2314598..2315479 (+) 882 WP_212510944.1 alpha/beta fold hydrolase -
  KCV10_RS10930 dapE 2315616..2316749 (-) 1134 WP_191016622.1 succinyl-diaminopimelate desuccinylase -
  KCV10_RS10935 - 2316875..2317018 (-) 144 WP_002051109.1 entericidin A/B family lipoprotein -

Sequence


Protein


Download         Length: 1506 a.a.        Molecular weight: 171342.98 Da        Isoelectric Point: 4.3685

>NTDB_id=558458 KCV10_RS10910 WP_212510942.1 2308011..2312531(+) (chpA) [Acinetobacter seifertii strain S63-3]
MKEILKTLTEAMTLPEDSYSEQDAEFLEIFVEEIDEIFVDLQPLLNEWMQSANTATLTEIRRHFHTLKGSGRMIGAKSSA
ELAWTVEDTLNRVINQSLKLTPAIQGYVQLVFKFYFLKLVDNFKQKRAHAVDFRPLILLGQQLQQQQSLEPALEELLQLS
NTLTAETITGLELDYIEQDLLAEPIVEDVHTEIEINLNETLALFMEEAEEHLSTINQFLNQELHQYDSYNALIRALHTLR
GSSAMAQVETIFEASTKVEHLFKILLQEELSSNSDEILLLQEYREFIGESLELLSSNSSSEQLEARLAQFNQSWDAYVEQ
HGDRTDPLMPSHGLVSQLLLLDVSELLDAELDFEKGIRNEFPGYLERLSEQADLLLQHTHSQAMLGLHEYTSQLKDSYNV
LLDKPVLLQSDYIFEIYQKAHQQLIQLFDALAAGQRVGIVKQHQSILEELKLYTLHTPSIQNDLPHQNFTFDEPLFNTEL
EPEVITVENLSDSADWTVLSQSVQQDRQYILSAQVNRNFDPDLLDIFLEEADELLEGIDTDLNIWVGEQENFAALNNLMR
YLHTLKGGANMVQATYIGSITHELESIYERLIQKQLIATSPLIDFIRLIQDDLADRLQIMREKQLDYAAPYTINALKQAG
KNSNFQPVPEVEVFDTESEIFSEQEVVSQVLINEVPAETEVVVDELEAHHDQVFDTVVTELATPVEVITSVESSQENEAV
VDEEDITVVVEQTFLEEAAELLEMADVLLKQWLDQRTNRSILLQLQRAVHSLKGGARMVGLEAVYAIAYQLENTFEQFAL
HHFNSNIYDHLLESAIAWLKDAIFKHNYQHFDGLQQSLENIQFFETNIQIPAKLTKADLFSSEPVMTFIQGDGTEPPPMM
GVWEQTERLDQNNEMIRVSADLIEKMIDLSGENSINRSRIEMDLSQFGHTLVEMELAIQRLADQLRRMEGELETQIIAKH
GIEHSRYTDFDPLEMDQYSSLNQLSKSLAESASDLVDFKNTLSHKIRDTESLLLQQSRIQAEIQEGLMRTRLVPFSRLLP
RLQRIVRQTSTALNRPAELFVNNTEGELDRNILERLVTPLEHMLRNAIDHGLEDRTQRQQANKPEAGRIELNIQRQGTDV
VVVFSDDGQGIDVEKVRQKALLAGLIKPEQHLEHQDILQLIFHPGLSTADQITQISGRGVGLDVVQSDIKALGGHVSVDS
VYGKGTTFTIRVPTTVAVSDALMVKVADQQFAIPLAQIDRIVRVSPASLEQYFESPKELFEYENKRYPLRYLSEFVGNQP
IPRLNGMMYSLPVLMIKANNGQTVALLVDQLIGSRAQIVVKPIGQQFASIGAIAGATILGDGQVCLILDGQNIARQIQST
PRHKQLGEVVYRQRESDERRLVMIVDDSVTVRKVTSRLLERQGYDVVTAKDGVDAIEQLENIKPDLMLLDIEMPRMDGFE
VLNLVRHHDMHQYMPIIMITSRTGEKHRERAFSLGVSQYMGKPFQEEELLENIDALLVAFESEVKS

Nucleotide


Download         Length: 4521 bp        

>NTDB_id=558458 KCV10_RS10910 WP_212510942.1 2308011..2312531(+) (chpA) [Acinetobacter seifertii strain S63-3]
ATGAAAGAAATATTAAAAACTTTAACTGAAGCAATGACTCTACCTGAAGATAGCTATTCTGAACAAGATGCTGAGTTTCT
TGAGATTTTTGTCGAAGAAATTGATGAAATTTTTGTTGATTTGCAGCCATTGTTGAATGAATGGATGCAGTCTGCAAATA
CTGCTACGCTCACTGAAATTCGCCGCCATTTTCATACCTTAAAAGGTTCGGGGAGAATGATTGGTGCTAAATCTTCGGCC
GAGCTTGCTTGGACAGTTGAAGATACGCTCAATCGAGTAATCAATCAAAGCCTTAAGCTGACTCCAGCTATTCAAGGCTA
TGTTCAGTTAGTGTTTAAGTTCTATTTCCTTAAATTAGTAGATAACTTTAAGCAAAAACGAGCACATGCAGTAGATTTTA
GACCGCTTATTTTATTAGGCCAACAACTACAACAACAGCAAAGTTTAGAACCTGCTTTAGAAGAGCTTTTACAACTTTCA
AATACGCTTACTGCCGAAACAATCACTGGGCTTGAGCTAGACTATATTGAGCAAGATTTATTGGCTGAGCCAATTGTTGA
AGATGTACATACTGAAATTGAAATAAATCTAAATGAAACTTTAGCCTTGTTTATGGAAGAGGCGGAAGAGCATTTATCGA
CAATTAATCAGTTCTTAAATCAAGAACTACATCAGTATGATAGCTACAATGCTTTAATACGTGCTCTACACACTTTGCGT
GGCAGTTCTGCAATGGCGCAGGTCGAAACAATTTTTGAAGCCAGTACTAAAGTTGAGCACTTATTTAAAATCTTATTGCA
AGAGGAGCTTTCTTCTAATTCAGATGAGATTTTATTATTACAAGAATATCGTGAGTTTATTGGCGAGAGCTTAGAACTGC
TATCTAGCAATAGTTCAAGTGAACAGCTTGAAGCGAGATTGGCGCAGTTTAATCAGTCATGGGATGCCTACGTGGAGCAA
CATGGTGATCGAACTGATCCATTAATGCCTTCACATGGTTTGGTGTCGCAATTATTGCTGCTAGATGTTTCTGAGTTACT
AGATGCAGAATTAGATTTTGAGAAAGGAATTCGTAACGAGTTTCCTGGTTATCTTGAACGTCTAAGTGAACAGGCTGATC
TGTTGCTACAGCATACTCACTCTCAAGCAATGCTTGGTTTGCATGAATATACGAGCCAATTGAAAGACAGCTATAATGTA
TTGCTTGATAAACCTGTCTTGTTGCAATCAGACTATATTTTTGAAATTTATCAGAAAGCGCATCAACAACTTATTCAATT
GTTCGATGCTTTAGCTGCTGGTCAGCGAGTCGGTATTGTTAAGCAACATCAAAGTATTCTAGAAGAATTAAAACTTTATA
CGTTACATACGCCGAGTATTCAAAACGATTTACCTCATCAGAATTTTACTTTTGATGAGCCACTATTCAATACTGAACTA
GAACCAGAAGTTATTACGGTAGAGAATTTATCAGATTCTGCTGACTGGACAGTATTAAGCCAGAGTGTACAGCAAGATCG
TCAGTATATTTTATCTGCACAGGTAAATCGAAACTTTGATCCTGACCTTTTGGACATTTTCCTTGAAGAAGCTGATGAGC
TACTTGAGGGGATTGATACTGATCTCAATATATGGGTAGGTGAGCAAGAAAACTTTGCAGCTCTGAACAACTTAATGCGC
TATTTGCATACCTTGAAAGGGGGAGCAAATATGGTTCAGGCAACTTATATCGGTTCGATTACCCATGAATTAGAAAGCAT
ATATGAACGTTTAATTCAAAAGCAGTTAATTGCAACCTCACCTCTAATTGATTTTATTCGTTTGATTCAAGATGACTTGG
CCGATCGTCTACAAATCATGCGTGAGAAACAGCTAGATTATGCGGCTCCTTACACAATTAATGCGTTAAAACAAGCTGGT
AAAAACTCTAACTTCCAACCTGTGCCTGAGGTTGAAGTATTTGATACTGAAAGTGAGATATTCTCTGAACAAGAGGTGGT
GTCTCAAGTATTAATAAATGAGGTACCAGCGGAAACAGAAGTTGTTGTTGACGAATTAGAAGCTCATCACGATCAAGTAT
TTGATACCGTTGTTACTGAATTGGCTACGCCAGTTGAAGTAATAACATCAGTTGAATCCTCGCAAGAGAATGAAGCTGTA
GTTGACGAAGAAGATATTACCGTTGTTGTTGAGCAGACATTCCTAGAAGAAGCTGCTGAATTGTTAGAAATGGCTGATGT
GCTATTGAAACAATGGTTGGATCAGCGTACGAACCGTAGTATCTTGCTTCAGTTACAAAGAGCCGTGCACAGTTTGAAGG
GTGGTGCACGCATGGTCGGTTTAGAGGCCGTGTATGCAATTGCTTATCAACTGGAAAATACTTTTGAACAGTTTGCACTG
CATCACTTCAACTCGAATATTTATGACCATCTGCTCGAAAGTGCAATTGCATGGCTAAAAGATGCAATTTTCAAGCACAA
CTACCAGCATTTCGATGGACTACAACAAAGTTTAGAAAATATTCAATTCTTTGAAACGAATATCCAAATTCCAGCGAAGT
TAACAAAAGCTGATTTGTTTAGCTCAGAACCTGTGATGACCTTTATACAAGGTGATGGTACCGAACCACCACCAATGATG
GGAGTATGGGAGCAAACAGAACGTCTGGATCAAAATAATGAAATGATCCGAGTTTCAGCAGACTTAATCGAGAAGATGAT
TGATTTGTCAGGTGAAAATTCGATTAACCGTTCGCGAATTGAAATGGATCTAAGTCAGTTTGGTCATACATTGGTTGAAA
TGGAATTGGCTATTCAACGACTTGCCGATCAGTTACGTCGAATGGAAGGCGAGTTAGAAACACAAATTATTGCCAAACAC
GGTATTGAGCATTCTCGTTATACCGACTTTGACCCTTTAGAGATGGACCAATATTCATCTTTAAATCAGTTGTCGAAATC
TCTTGCTGAATCTGCATCGGACTTAGTCGACTTTAAAAATACGTTGTCTCATAAGATCAGAGATACAGAAAGTCTGCTTT
TACAACAGTCACGAATTCAGGCAGAAATTCAAGAAGGTTTGATGCGAACACGATTAGTTCCTTTTTCACGGTTACTACCG
CGTTTACAGCGAATTGTTCGTCAGACCTCTACTGCGTTGAACAGGCCTGCTGAGCTTTTTGTAAATAATACTGAAGGTGA
ACTAGACCGTAATATTTTAGAGCGTTTAGTAACACCGCTTGAGCATATGCTCAGAAACGCAATTGACCATGGCTTAGAAG
ACAGAACACAACGTCAGCAAGCTAATAAACCTGAAGCTGGGCGTATTGAACTTAATATTCAACGTCAAGGTACAGATGTG
GTCGTTGTCTTTAGTGATGATGGACAAGGTATTGATGTAGAAAAAGTACGTCAAAAAGCACTGCTTGCGGGTCTGATCAA
ACCGGAACAGCACTTGGAACACCAAGATATTTTACAACTGATTTTCCATCCGGGTTTAAGTACAGCAGATCAGATTACTC
AAATCTCTGGGCGTGGTGTTGGACTCGATGTTGTACAAAGCGACATTAAGGCTCTAGGTGGACATGTTAGCGTAGACTCT
GTTTATGGTAAGGGAACAACATTTACTATTCGTGTACCGACTACGGTAGCTGTAAGTGATGCCTTAATGGTGAAAGTGGC
AGATCAGCAATTTGCGATTCCACTTGCTCAAATCGACCGAATTGTTCGAGTTTCACCAGCTTCTTTAGAACAGTATTTTG
AAAGTCCTAAAGAGCTATTCGAGTATGAAAATAAACGTTATCCATTACGTTATCTTTCAGAATTTGTGGGTAATCAACCA
ATACCACGTCTAAATGGCATGATGTATTCATTACCTGTCTTAATGATTAAAGCTAACAATGGCCAAACTGTGGCTTTACT
TGTTGACCAGTTAATTGGTTCTCGAGCACAAATTGTAGTGAAACCAATTGGCCAACAGTTCGCTAGCATTGGGGCAATTG
CAGGTGCGACTATTTTAGGTGATGGACAAGTTTGCTTAATTTTAGACGGACAAAATATTGCGCGACAAATTCAGTCTACT
CCACGTCATAAACAGCTTGGTGAAGTGGTATATAGACAACGAGAATCTGACGAGCGCCGTCTCGTTATGATTGTCGATGA
CTCGGTAACTGTACGTAAGGTAACGTCTCGATTACTTGAACGCCAAGGCTACGATGTTGTTACGGCCAAAGATGGTGTGG
ATGCCATAGAGCAGCTAGAAAACATCAAGCCAGATCTAATGCTGCTTGATATTGAAATGCCGCGTATGGATGGTTTCGAA
GTACTGAATCTTGTACGACATCATGATATGCATCAATACATGCCAATTATTATGATTACGTCCCGAACAGGTGAAAAACA
CCGAGAAAGAGCATTCTCATTAGGCGTAAGTCAATATATGGGTAAACCTTTCCAAGAGGAAGAGTTACTAGAGAATATCG
ATGCTTTACTTGTAGCGTTTGAAAGCGAGGTCAAATCATGA


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

91.241

100

0.913