Detailed information    

insolico Bioinformatically predicted

Overview


Name   chpA   Type   Regulator
Locus tag   ACNUEH_RS00605 Genome accession   NZ_OZ197095
Coordinates   129684..134204 (-) Length   1506 a.a.
NCBI ID   WP_416632232.1    Uniprot ID   -
Organism   Acinetobacter baumannii isolate 23S01404-6     
Function   regulation of type IV pilus assembly (predicted from homology)   
Competence regulation

Genomic Context


Location: 124684..139204
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  ACNUEH_RS00575 - 125090..125458 (-) 369 WP_001259501.1 YbaN family protein -
  ACNUEH_RS00580 - 125563..126471 (+) 909 WP_057065447.1 DUF1853 family protein -
  ACNUEH_RS00585 - 126570..126713 (+) 144 WP_001984826.1 entericidin A/B family lipoprotein -
  ACNUEH_RS00590 dapE 126839..127972 (+) 1134 WP_001016572.1 succinyl-diaminopimelate desuccinylase -
  ACNUEH_RS00595 - 128110..128991 (-) 882 WP_009519710.1 alpha/beta fold hydrolase -
  ACNUEH_RS00600 - 129223..129687 (-) 465 WP_000678925.1 hypothetical protein -
  ACNUEH_RS00605 chpA 129684..134204 (-) 4521 WP_416632232.1 Hpt domain-containing protein Regulator
  ACNUEH_RS00610 - 134351..136429 (-) 2079 WP_024438034.1 methyl-accepting chemotaxis protein -
  ACNUEH_RS00615 - 136476..137011 (-) 536 Protein_115 chemotaxis protein CheW -
  ACNUEH_RS00620 - 137072..137434 (-) 363 WP_000101096.1 response regulator -
  ACNUEH_RS00625 pilG 137458..137841 (-) 384 WP_024438036.1 twitching motility response regulator PilG Regulator
  ACNUEH_RS00630 - 138124..138762 (+) 639 WP_002027721.1 hypothetical protein -

Sequence


Protein


Download         Length: 1506 a.a.        Molecular weight: 171689.79 Da        Isoelectric Point: 4.3086

>NTDB_id=1169422 ACNUEH_RS00605 WP_416632232.1 129684..134204(-) (chpA) [Acinetobacter baumannii isolate 23S01404-6]
MKEILKTLTEAMTLPEDSYSEQDAEFLEIFIEEIEEIFVDLQPLINKWMQSENIATLTEIRRHFHTLKGSGRMIGAKSSA
ELAWTVEDTLNRVINQSLQLTPTIQSYVQLVFKFYFLKLVDNFKQKRAHTLDFRPLILLGQQLQQQQSLEPALEELLQLS
NTLTAETVTGLELDYIEQDSLAEPIIQDTHTEIEINLDETLTLFMEEAEEHLATIHQFLDQELHQYDSYNALIRALHTLR
GSSAMAQVETIFEASTKVEHLFKILLQEELSSHSEEILLLQEYREFVRDSLELLSRYSSSEQLEARLQQFNQSWDSYVEQ
HGDRTDPLMPSHGLVSQLLQLDVSELLDAELDFEKGIRNEFPDYLERLREQADLLLQHTHSQAMLGLHEYTSQLKESYEV
LLDKPALLQSDYIFEIYQKAHQQLIQLFDALAAGQRVGVVKQHQSILEELKLYTQYTPDISNDLPQQDSTSFEPIYNIEP
EPEVVATVENFSDSADWAVLGQSVQQDRQYISSTQVNQNFDADLLDIFLEEAEELLEGIDTDLNIWVGEQENFAALNNLM
RYLHTLKGGANMVQATYLGLIAHELESIYERLIQKQLVATSDLIDFIRLVQDDLADRLQIMREQQLDYAAPYTINALKRA
GQNSNFQPLPVVEAFDAESEVFSEQEVISEVIIDEIPVELEPALAKLETHHDQVFDTAVTELATPVEVITSVTSQENEVV
ADEQDIEAVVEQTFLEEATELLEMAESLLKQWFEQRTNRSILLQLQRAVHSLKGGARMVGLEAVQAIAYQLENAFEQFAL
HHFNSNIYDHLLESAIAWLKDAIFNHNYQHFDGLQQSLENIQFFETTIQIPTKLTRADLFSSEPVMTFIQGDGTEPPPIM
GAWEQTERLDQNNEMIRVSADLIEKMIDLSGENSINRSRIEMDLSQFSHTLVEMELAIQRLADQLRRMEGELETQIIAKH
GIEHSRYTDFDPLEMDQYSSLNQLSKSLAESASDLVDFKNTLSDKIRDTESLLLQQSRIQAEIQEGLMRTRLVPFSRLLP
RLQRIVRQTSTALNRPAELFVNNTEGELDRNILEQLVTPLEHMLRNAIDHGLEDRAQRQLANKPETGRIELNIQRQGTDV
VVVFSDDGQGIDVDKVRQKALLAGLIKPEQDLEQQDILQLIFHPGLSTAEQVTQISGRGVGLDVVQSDIKSLGGHVSVES
VYGQGTTFTIRVPTTVAVSDALMVKVADQQFAIPLAQIDRIIRVTPASLEQYFESPQELFEYENKRYPLRYLSEFVGNQP
IPRLNGVMYSLPVLMIKANNGQTVALLVDQLIGSRAQIVVKPIGQQFSSIGAIAGATILGDGQVCLILDGQNIARQIQST
QRHKQLSEAVYRHRESDERRLIMIVDDSVTVRKVTSRLLERQGYDVVTAKDGVDAIEQLENIKPDLMLLDIEMPRMDGFE
VLNLVRHHDMHQYMPIIMITSRTGEKHRERAFSLGVSQYMGKPFQEEELLENIDALLVASDSEVKS

Nucleotide


Download         Length: 4521 bp        

>NTDB_id=1169422 ACNUEH_RS00605 WP_416632232.1 129684..134204(-) (chpA) [Acinetobacter baumannii isolate 23S01404-6]
ATGAAAGAAATATTAAAAACTTTAACTGAAGCAATGACGCTACCTGAAGATAGCTATTCTGAACAAGATGCTGAGTTTCT
TGAGATCTTCATTGAAGAAATTGAAGAGATTTTTGTTGATTTGCAACCTTTGATAAATAAATGGATGCAGTCTGAGAATA
TTGCTACGCTCACTGAAATTCGTCGTCATTTCCATACCTTAAAAGGTTCCGGAAGAATGATTGGCGCTAAATCTTCAGCT
GAGCTTGCGTGGACAGTCGAAGATACACTCAACCGGGTAATCAACCAAAGCTTACAATTAACGCCAACTATTCAGAGCTA
TGTGCAGTTAGTATTTAAGTTCTATTTCCTTAAATTAGTAGATAATTTTAAGCAAAAACGAGCACATACCTTAGATTTCA
GACCTCTTATTTTATTAGGCCAACAACTACAACAACAGCAAAGTTTAGAACCAGCTTTAGAAGAGCTTTTACAACTTTCA
AATACGCTTACGGCCGAAACAGTGACTGGTCTTGAGCTAGATTATATTGAACAAGATTCGTTAGCCGAGCCAATCATTCA
AGATACACATACTGAAATTGAAATAAATCTAGATGAAACCTTGACCTTATTTATGGAAGAGGCGGAAGAACATTTAGCCA
CGATTCATCAATTTTTGGATCAAGAGTTACATCAGTATGACAGTTACAATGCTTTAATACGTGCTTTACATACTTTGCGT
GGTAGCTCTGCAATGGCGCAGGTCGAAACAATTTTCGAGGCCAGTACCAAAGTTGAGCATTTATTTAAAATACTACTGCA
AGAAGAGTTATCTTCTCACTCTGAAGAAATTTTATTATTACAAGAATATCGTGAGTTTGTTCGAGATAGCTTGGAACTAC
TATCTAGATATAGTTCAAGTGAACAGCTCGAAGCGAGATTGCAGCAATTTAATCAATCTTGGGATTCATATGTTGAGCAA
CATGGTGACCGAACAGATCCGTTAATGCCTTCTCATGGCTTGGTATCGCAATTATTACAATTAGATGTTTCTGAATTATT
GGATGCAGAATTAGATTTTGAGAAGGGAATTCGTAATGAGTTTCCTGATTACCTTGAACGCCTAAGAGAACAGGCTGATT
TATTACTGCAACATACACATTCTCAAGCAATGTTGGGTTTACATGAATATACCAGCCAACTGAAAGAAAGTTATGAAGTG
CTGCTTGATAAACCTGCTTTATTACAATCAGACTATATATTTGAAATTTATCAAAAAGCGCATCAACAGCTCATTCAATT
ATTTGATGCTTTAGCTGCTGGTCAGCGAGTCGGTGTTGTTAAGCAACATCAAAGTATTTTAGAAGAATTAAAACTTTATA
CGCAGTACACTCCAGACATATCAAATGACCTGCCTCAGCAGGATTCGACATCTTTTGAACCAATATACAATATTGAACCA
GAGCCAGAAGTGGTAGCTACTGTAGAGAATTTCTCAGACTCTGCAGACTGGGCGGTATTAGGTCAAAGTGTGCAGCAAGA
TCGACAATATATTTCATCTACACAAGTGAATCAAAATTTTGATGCTGATCTTTTAGATATCTTTCTTGAGGAAGCTGAAG
AATTACTTGAGGGAATTGATACCGATCTTAATATTTGGGTAGGTGAGCAAGAAAACTTTGCAGCTCTGAACAACCTAATG
CGTTATTTGCATACCTTGAAAGGGGGAGCAAATATGGTTCAGGCAACGTATCTTGGTTTGATTGCCCATGAATTAGAAAG
CATCTATGAGCGTTTAATTCAAAAGCAATTAGTGGCAACTTCAGATTTAATTGATTTTATTCGTTTGGTTCAAGATGACT
TGGCTGACCGTTTACAAATCATGCGTGAACAACAACTAGATTATGCAGCCCCTTACACAATTAACGCATTAAAACGAGCG
GGTCAAAACTCTAACTTCCAACCTTTACCAGTGGTTGAGGCATTTGATGCTGAAAGTGAGGTATTCTCTGAGCAAGAGGT
GATATCGGAAGTAATAATAGATGAGATACCAGTAGAACTTGAACCTGCTCTTGCAAAGCTAGAAACTCATCACGATCAGG
TATTCGATACAGCGGTTACCGAGTTAGCTACTCCAGTTGAAGTAATTACCTCGGTTACATCGCAAGAGAATGAAGTTGTA
GCTGATGAACAGGACATTGAGGCTGTTGTTGAACAGACGTTCCTAGAAGAAGCTACTGAATTGTTAGAAATGGCTGAGTC
GCTATTAAAACAATGGTTTGAACAGCGTACAAACCGTAGTATTTTGCTTCAACTACAAAGAGCCGTGCACAGTTTGAAAG
GTGGTGCACGAATGGTGGGTCTAGAAGCCGTACAAGCAATTGCCTACCAACTAGAAAATGCTTTTGAACAATTTGCGCTG
CATCACTTCAATTCGAATATTTATGATCATTTATTAGAAAGTGCGATTGCATGGTTAAAAGATGCAATTTTCAACCACAA
CTATCAGCATTTCGATGGATTACAGCAAAGTTTAGAAAATATTCAATTCTTTGAAACTACAATCCAGATTCCGACTAAGT
TAACTAGAGCGGACTTGTTTAGCTCAGAACCGGTGATGACCTTTATACAAGGTGATGGTACAGAGCCTCCACCAATTATG
GGAGCGTGGGAGCAAACAGAGCGTCTGGATCAGAATAATGAAATGATCCGTGTCTCAGCCGACTTAATCGAGAAAATGAT
TGATTTGTCTGGTGAAAACTCCATTAACCGTTCACGAATTGAAATGGACCTAAGCCAATTTAGCCATACACTGGTTGAAA
TGGAGCTGGCGATTCAACGACTTGCCGATCAGTTACGTCGAATGGAAGGGGAGTTAGAAACACAGATTATTGCTAAACAT
GGAATTGAACATTCTCGTTATACCGACTTTGACCCGTTAGAGATGGACCAATATTCATCTTTAAATCAATTGTCGAAATC
GCTTGCTGAATCTGCATCGGACTTGGTCGACTTTAAAAATACGTTATCTGACAAAATCAGAGATACCGAAAGTTTGCTTT
TACAACAATCACGAATTCAAGCGGAAATTCAAGAAGGTTTAATGCGGACACGGTTGGTCCCATTTTCGCGTTTATTGCCG
CGTTTACAACGAATTGTTCGTCAGACGTCTACAGCATTGAATAGACCTGCTGAGCTTTTCGTAAATAATACGGAAGGTGA
GTTGGACCGCAACATTTTAGAACAGTTAGTGACTCCGCTTGAGCATATGCTCAGAAACGCAATTGACCATGGTTTAGAAG
ACCGAGCGCAGCGGCAACTAGCAAATAAACCAGAAACAGGGCGTATTGAGCTTAATATTCAGCGTCAAGGTACGGATGTT
GTGGTTGTCTTTAGTGATGATGGTCAAGGTATTGATGTTGATAAAGTACGTCAGAAAGCACTCCTTGCCGGATTGATCAA
GCCAGAACAAGACTTAGAACAGCAAGACATACTGCAACTCATTTTCCATCCGGGTTTAAGTACAGCAGAGCAAGTCACTC
AGATTTCCGGACGTGGTGTAGGTCTTGATGTCGTGCAGAGTGATATTAAGTCTTTGGGTGGACATGTCAGCGTTGAATCC
GTCTATGGGCAGGGAACAACATTTACGATTCGTGTACCGACTACAGTAGCGGTAAGTGATGCCTTAATGGTTAAAGTGGC
AGATCAACAATTTGCGATTCCACTTGCTCAAATCGATCGAATTATTCGAGTGACACCAGCCTCTTTAGAGCAGTATTTTG
AAAGTCCTCAAGAACTATTTGAGTATGAAAATAAACGTTATCCATTACGTTATCTTTCTGAATTTGTTGGTAACCAACCC
ATACCACGTTTAAATGGTGTGATGTATTCATTACCTGTGTTAATGATTAAAGCCAATAATGGCCAAACTGTGGCACTACT
TGTTGACCAGTTAATTGGCTCTCGAGCACAAATTGTAGTGAAACCAATTGGTCAACAGTTCTCTAGCATTGGAGCAATTG
CAGGCGCCACAATTTTAGGTGATGGACAGGTCTGCTTAATTTTAGACGGACAAAATATTGCGCGACAAATTCAGTCAACT
CAGCGTCATAAACAACTTAGTGAAGCAGTGTATAGACACCGAGAGTCTGATGAACGCCGCCTCATCATGATTGTAGATGA
CTCAGTAACTGTACGTAAGGTCACGTCCCGATTGCTTGAACGTCAAGGCTATGATGTGGTTACGGCTAAAGATGGTGTTG
ACGCCATAGAGCAGCTAGAAAATATTAAGCCAGATTTGATGCTACTTGATATTGAAATGCCACGTATGGATGGTTTTGAG
GTTCTCAATCTTGTACGACATCATGATATGCATCAATACATGCCAATTATTATGATTACATCCAGAACAGGCGAAAAACA
TCGTGAACGAGCATTCTCGTTAGGTGTAAGTCAATATATGGGTAAACCTTTCCAGGAAGAAGAGTTACTAGAGAATATCG
ATGCTTTACTTGTAGCGTCTGACAGTGAGGTCAAATCATGA


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

98.473

100

0.985


Multiple sequence alignment