Detailed information    

insolico Bioinformatically predicted

Overview


Name   chpA   Type   Regulator
Locus tag   CDG68_RS06775 Genome accession   NZ_CP033133
Coordinates   826751..831226 (+) Length   1491 a.a.
NCBI ID   WP_087553896.1    Uniprot ID   A0A3G2T0B0
Organism   Acinetobacter wuhouensis strain WCHAW010062     
Function   regulation of type IV pilus assembly (predicted from homology)   
Competence regulation

Genomic Context


Location: 821751..836226
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  CDG68_RS06750 (CDG68_06755) - 822270..822908 (-) 639 WP_162994901.1 hypothetical protein -
  CDG68_RS06755 (CDG68_06760) pilG 823191..823574 (+) 384 WP_004827613.1 twitching motility response regulator PilG Regulator
  CDG68_RS06760 (CDG68_06765) - 823595..823963 (+) 369 WP_087553898.1 PleD family two-component system response regulator -
  CDG68_RS06765 (CDG68_06770) - 823967..824503 (+) 537 WP_068975230.1 chemotaxis protein CheW -
  CDG68_RS06770 (CDG68_06775) - 824546..826615 (+) 2070 WP_087553897.1 methyl-accepting chemotaxis protein -
  CDG68_RS06775 (CDG68_06780) chpA 826751..831226 (+) 4476 WP_087553896.1 Hpt domain-containing protein Regulator
  CDG68_RS06780 (CDG68_06785) - 831235..831699 (+) 465 WP_068975227.1 hypothetical protein -
  CDG68_RS06785 (CDG68_06790) dapE 831788..832924 (-) 1137 WP_087553895.1 succinyl-diaminopimelate desuccinylase -
  CDG68_RS06790 (CDG68_06795) - 833077..833217 (-) 141 WP_068975225.1 entericidin A/B family lipoprotein -
  CDG68_RS06795 (CDG68_06800) - 833414..834268 (-) 855 WP_087553910.1 DUF1853 family protein -
  CDG68_RS06800 (CDG68_06805) - 834500..834895 (+) 396 WP_068975238.1 YbaN family protein -

Sequence


Protein


Download         Length: 1491 a.a.        Molecular weight: 168589.04 Da        Isoelectric Point: 4.3463

>NTDB_id=321650 CDG68_RS06775 WP_087553896.1 826751..831226(+) (chpA) [Acinetobacter wuhouensis strain WCHAW010062]
MKEILKHLVENVTLPEDTYLDQDEEILDFFVEELEDIFEQLQISLDLWQKEASKDAELVNVRRYFHTLKGSGRMVGAKSS
GELAWTVEDTLNRVIANNLELNTEIQQYVSTVFNIYKFKLFSEFLNKQPHHLNLAPLVLLGQQLQQKISLEPALEDLLSL
ATTLNSADVVTGLEIASVELVAPNESTEVEAIVAQESVYVDAVATTDENFNSETLAIFVEESEEHLATINEFLHLEQHTP
DQYNRLIRALHTLRGSSSMAHVDDVFEASSKVEHLFKVLVQEDTESSKNENTLLTHYAEFVSDYLHILKQKGGESSELHN
IYQKFNDAWDRYDFQHQYQQDQDSQVGLVTQLVDLEIDLLLDAEFEFDKRAPVEHPVYFQSLSQQTQLLIEHTNNRASQG
IHDFSVQLKEAYERVIANPALLNTDYAYEIFDKVHQEFIHLFDTLASGQRVSLTDEVKETLVELHDYLLQEIDVNVELDA
VESAQPEVATQPSGSIESAGRYVFAEINKDKQSIDSDLSQREFDMDVLDIFIEEADELSDGMDQDLNTWSENPGDTTALN
NLMRYLHTLKGGANMVQANNIGLIAHELETIYERIIKGQLQATPQIIESIRLIQDDIADRIQLIREKSIDYPADHILAVL
KNIDQQRPAESTSAYDESDTAKQQFVNDSADVEEIEHVEDDIVTAIEHIAENDHVAESVQVVDVESLFDSSSDLDPADIV
ARETFIEEARELIDDGLKNLSQWFEQRSNRSLLLQLQRIAHSLKGGAKMVHLEQVAEIAYELENAFEQFGLHNFNSNVYD
GLLERTFRWLDAAIFKRDYENFDGLKSNLHGIEYVDVSAQLPEKLARTNLLFEQASNEFVQGDGTEPPSMLGEWDQSEKV
EASNEMIRISADLVEKMIDLSGENAINRSRIEMDLGQLGTTLTDMELAIQRLADQLRRMEGELESQIIAKHGDFNSRYTD
FDPLEMDQYSSLNQLSKSLAESASDLVDFKTTLSDKIRDTEGLLLQQSRIQAEIQESLMRTRLVPFSRLLPRLQRLVRQT
ASTVNKPTELLVNNTEGELDRNILEKLVSPLEHMLRNAIDHGIEDTEQRQKLGKSLTGRIELNISRQGTDVLVSFNDDGK
GIDPDVIRAKAREKGLLKADQQLEPNEILQFIFHPGFSTAQQVTQISGRGVGLDVVQSEIKSLGGQVVVSSELGKGSTFT
IRVPTTVAVSDALMVKVGDQQFAVPLSQIDRIVRISPTALEEYFETQNDYFDIDFQSYELRYLGEFTANQKTPRLHGIAH
SLPVLLIKGNMGQSIAILVDQLIGSRSQIVVKPIGKQFAAINAIAGATILGDGQVCLILDGQNIARQVQSSTRGGVEQLQ
QDKQRHRDQRRLIMIVDDSVTVRKVTTRLLERQGFDVITAKDGVDAIEQLENVKPDLMLLDIEMPRMDGFEVTNLVRHHE
VHRDLPIIMITSRTGEKHRERAFSLGVTNYMGKPFQEADLLQNIDALLTVK

Nucleotide


Download         Length: 4476 bp        

>NTDB_id=321650 CDG68_RS06775 WP_087553896.1 826751..831226(+) (chpA) [Acinetobacter wuhouensis strain WCHAW010062]
ATGAAAGAAATATTAAAACATTTAGTGGAAAACGTCACTTTACCTGAAGATACTTATCTTGATCAGGACGAAGAAATTTT
AGATTTTTTTGTAGAAGAGCTCGAAGATATTTTTGAACAGTTACAAATCTCTCTGGATTTATGGCAAAAAGAAGCATCTA
AAGATGCCGAACTCGTCAATGTACGTCGCTATTTCCATACGCTTAAAGGGTCTGGGCGAATGGTCGGAGCTAAAAGTTCT
GGGGAATTGGCTTGGACTGTTGAAGACACATTAAACCGTGTGATTGCAAATAATTTAGAGCTGAATACTGAGATTCAACA
ATATGTCAGTACAGTATTTAATATTTATAAATTCAAACTTTTTTCTGAATTTTTAAATAAGCAGCCTCATCATTTGAATT
TGGCACCATTGGTATTGTTAGGTCAGCAATTACAGCAAAAAATAAGTTTAGAACCTGCTTTAGAAGATTTATTAAGTTTA
GCGACAACACTTAATAGTGCTGATGTGGTGACTGGTTTAGAAATTGCTAGTGTTGAGTTGGTGGCACCAAATGAGTCAAC
TGAAGTTGAAGCTATTGTTGCTCAAGAATCTGTATATGTTGATGCAGTTGCAACAACTGATGAGAATTTCAATTCTGAAA
CTTTAGCGATTTTTGTTGAAGAATCAGAAGAGCACTTGGCAACGATCAATGAATTCTTGCATTTAGAACAACATACGCCT
GATCAGTATAACCGCTTGATTCGTGCATTACATACACTACGTGGAAGTTCTTCCATGGCGCATGTGGACGATGTATTTGA
GGCGAGTAGTAAAGTTGAGCATCTCTTTAAAGTATTGGTTCAAGAAGATACAGAATCATCGAAAAATGAAAATACTTTAT
TGACCCATTATGCTGAGTTTGTAAGTGATTATTTACATATTCTTAAGCAGAAAGGCGGGGAGAGTTCAGAGTTACACAAC
ATTTATCAAAAATTCAATGATGCATGGGATCGTTATGACTTCCAACATCAATACCAGCAAGATCAGGATTCACAAGTGGG
CTTAGTTACTCAGCTTGTCGATTTGGAAATTGATCTATTATTGGATGCTGAATTTGAGTTTGATAAGCGTGCGCCTGTTG
AACATCCTGTTTATTTTCAAAGCCTGAGTCAGCAAACTCAGTTGTTGATAGAACATACCAATAATCGTGCGTCTCAAGGT
ATTCATGATTTTAGTGTTCAATTAAAAGAAGCGTATGAGCGAGTTATTGCAAATCCTGCTCTACTGAATACAGATTATGC
TTATGAAATTTTTGATAAAGTACATCAAGAGTTTATTCATTTATTTGATACTTTGGCTTCAGGACAGCGTGTTAGTTTAA
CAGATGAAGTAAAAGAGACCTTAGTTGAATTGCATGACTATTTACTTCAAGAAATTGATGTCAATGTAGAGCTTGATGCG
GTTGAATCGGCGCAACCAGAAGTTGCTACGCAGCCGAGTGGTTCAATTGAATCTGCTGGTCGTTATGTTTTTGCAGAAAT
TAATAAAGATAAACAATCTATTGACTCAGATTTGAGTCAACGTGAATTCGATATGGATGTTTTAGACATTTTTATTGAGG
AAGCGGATGAATTGTCGGATGGTATGGATCAGGATTTAAATACTTGGTCTGAGAATCCTGGAGATACAACGGCTTTAAAT
AACTTGATGCGTTATTTGCACACTTTAAAAGGTGGCGCAAATATGGTTCAAGCCAATAATATTGGTTTAATTGCGCATGA
ATTAGAAACAATCTATGAGCGAATCATCAAAGGTCAATTACAAGCAACGCCACAAATTATTGAGTCAATCCGTTTGATTC
AAGATGACATTGCTGACCGAATTCAATTGATTCGTGAAAAATCAATTGATTATCCAGCAGATCATATTTTAGCAGTGCTG
AAAAATATTGATCAACAACGTCCAGCGGAAAGTACATCTGCTTATGATGAATCAGATACAGCGAAGCAACAGTTTGTAAA
TGATTCAGCTGATGTTGAAGAAATTGAGCATGTGGAAGATGATATTGTTACTGCAATTGAACACATTGCAGAAAATGATC
ATGTTGCTGAGAGTGTTCAAGTTGTTGATGTAGAATCGCTTTTTGATTCAAGTTCAGATTTAGATCCAGCGGATATCGTT
GCACGTGAAACCTTCATTGAAGAAGCTCGTGAGTTAATTGATGATGGTCTAAAGAATTTATCTCAATGGTTTGAACAACG
CAGTAATCGTAGTTTATTACTTCAATTACAACGTATTGCACACAGCTTAAAAGGCGGTGCAAAAATGGTGCATTTAGAGC
AAGTTGCTGAAATTGCTTATGAGCTTGAGAATGCTTTCGAACAATTCGGTTTACATAATTTTAACTCGAATGTTTATGAT
GGTTTGTTGGAAAGAACATTCCGTTGGTTAGATGCAGCAATTTTCAAACGTGACTATGAAAATTTTGATGGATTGAAATC
AAATTTACATGGTATTGAATACGTTGATGTTTCTGCACAACTGCCTGAGAAGTTGGCACGTACCAATTTACTGTTTGAAC
AAGCGAGTAATGAATTCGTCCAAGGGGATGGTACTGAGCCACCATCAATGTTGGGTGAATGGGATCAATCAGAGAAGGTG
GAAGCCAGCAATGAGATGATTCGTATCTCTGCTGATTTGGTCGAGAAAATGATTGACCTTTCAGGTGAGAATGCGATTAA
CCGTTCGCGTATTGAAATGGATCTCGGTCAGTTAGGCACAACACTGACTGATATGGAGTTGGCAATACAACGTTTGGCAG
ATCAGTTACGTCGAATGGAAGGTGAGCTAGAAAGTCAAATTATTGCCAAACATGGTGATTTTAACTCGCGCTATACTGAC
TTTGACCCATTGGAAATGGACCAATATTCGTCATTAAACCAATTATCAAAATCATTGGCAGAATCAGCATCGGATTTGGT
CGACTTCAAAACGACTTTGTCGGATAAGATTCGTGATACTGAAGGTTTATTATTACAACAGTCACGTATTCAAGCTGAAA
TTCAAGAAAGTTTGATGCGTACCCGTCTGGTACCATTCTCACGACTATTGCCACGTTTGCAACGTTTAGTACGTCAAACT
GCATCTACAGTAAATAAGCCAACAGAATTGTTAGTGAATAATACTGAAGGCGAGTTGGATCGTAATATCTTAGAAAAACT
GGTTTCACCGCTTGAGCATATGCTTCGTAACGCGATTGACCACGGAATTGAAGATACGGAACAGCGTCAGAAACTTGGTA
AGTCATTGACTGGTCGTATTGAGTTGAACATTAGCCGTCAAGGTACTGATGTATTAGTATCATTCAATGATGATGGTAAA
GGTATTGATCCAGATGTTATTCGTGCTAAAGCGCGTGAAAAAGGTCTGTTGAAAGCGGATCAGCAACTCGAACCGAATGA
AATTTTACAATTCATTTTCCATCCTGGTTTCAGTACAGCACAACAAGTGACGCAAATTTCTGGTCGTGGTGTCGGTCTAG
ACGTTGTGCAAAGTGAGATTAAGTCACTGGGTGGTCAGGTTGTTGTAAGCTCAGAACTTGGCAAAGGTTCAACCTTTACA
ATCCGCGTGCCTACAACTGTTGCGGTTAGTGATGCTTTGATGGTAAAAGTTGGCGATCAACAATTTGCTGTTCCATTATC
ACAAATTGATCGTATTGTTCGAATTTCTCCAACAGCGTTGGAAGAGTATTTTGAAACACAAAATGATTACTTTGACATTG
ATTTCCAAAGCTACGAATTACGCTACTTAGGTGAATTTACCGCCAATCAAAAAACGCCACGTTTGCATGGTATTGCCCAT
TCACTTCCTGTTTTATTAATTAAAGGAAATATGGGACAGTCAATTGCGATCTTAGTCGATCAATTGATTGGTTCTCGTTC
ACAAATTGTGGTTAAACCGATTGGTAAGCAATTTGCGGCGATCAATGCGATTGCAGGAGCAACGATCTTAGGTGATGGTC
AAGTCTGTTTAATTCTTGATGGACAAAATATTGCACGACAAGTGCAAAGTTCAACTCGTGGTGGTGTGGAACAGTTACAA
CAAGATAAGCAACGTCATCGTGATCAACGCCGTTTGATTATGATTGTCGATGACTCAGTGACTGTACGTAAAGTTACGAC
ACGTTTACTTGAACGACAAGGTTTTGATGTCATCACGGCCAAAGATGGTGTAGATGCGATTGAACAACTTGAAAATGTCA
AACCAGACTTGATGTTACTGGATATTGAAATGCCACGTATGGACGGCTTCGAAGTGACGAATCTTGTACGTCACCACGAA
GTACATCGTGACTTACCAATTATTATGATTACATCACGTACTGGTGAAAAGCATCGTGAACGTGCCTTTAGCTTAGGCGT
GACCAATTATATGGGTAAACCATTCCAAGAAGCAGATTTATTGCAAAATATTGATGCTTTGTTGACGGTTAAATAG


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

59.433

100

0.604


Multiple sequence alignment