Detailed information    

insolico Bioinformatically predicted

Overview


Name   chpA   Type   Regulator
Locus tag   PGW99_RS08620 Genome accession   NZ_CP117520
Coordinates   1790120..1794658 (-) Length   1512 a.a.
NCBI ID   WP_273777271.1    Uniprot ID   -
Organism   Acinetobacter sp. GSS19     
Function   regulation of type IV pilus assembly (predicted from homology)   
Competence regulation

Genomic Context


Location: 1785120..1799658
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  PGW99_RS08590 elsL 1786209..1786742 (-) 534 WP_273777265.1 cell wall-recycling L,D-carboxypeptidase ElsL -
  PGW99_RS08595 - 1786732..1787127 (-) 396 WP_273777266.1 YbaN family protein -
  PGW99_RS08600 - 1787226..1788110 (+) 885 WP_273777267.1 DUF1853 family protein -
  PGW99_RS08605 - 1788202..1788342 (+) 141 WP_273777268.1 entericidin A/B family lipoprotein -
  PGW99_RS08610 dapE 1788459..1789592 (+) 1134 WP_273777269.1 succinyl-diaminopimelate desuccinylase -
  PGW99_RS08615 - 1789651..1790115 (-) 465 WP_273777270.1 hypothetical protein -
  PGW99_RS08620 chpA 1790120..1794658 (-) 4539 WP_273777271.1 Hpt domain-containing protein Regulator
  PGW99_RS08625 - 1794825..1796516 (-) 1692 WP_273777272.1 methyl-accepting chemotaxis protein -
  PGW99_RS08630 - 1796564..1797100 (-) 537 WP_273777273.1 chemotaxis protein CheW -
  PGW99_RS08635 - 1797104..1797472 (-) 369 WP_273777274.1 response regulator -
  PGW99_RS08640 pilG 1797502..1797885 (-) 384 WP_273777275.1 twitching motility response regulator PilG Regulator
  PGW99_RS08645 - 1798171..1798815 (+) 645 WP_273777276.1 hypothetical protein -

Sequence


Protein


Download         Length: 1512 a.a.        Molecular weight: 170282.79 Da        Isoelectric Point: 4.2827

>NTDB_id=786229 PGW99_RS08620 WP_273777271.1 1790120..1794658(-) (chpA) [Acinetobacter sp. GSS19]
MKEILKNLVETTTLPEDSYLDQDSEILDIFVEEIEEIFVELDQLLEQWMSDPADHDSLVSIRRHFHTLKGSGRMVGAKSA
GELAWTVEDTLNRVLAGGVELTPAVQQYVKTVYQIFKYKLYDNFKSVTVHQIDFRPLVLLGQQLQKQQSVEPALEELLGL
ADTLNNTEAKTGLELLDEAESESVIAEESNDTMLTAEQVSSDMQAETLSIFLEESDEHLAVIDQFLNKMQPDARDYNSLI
RALHTLRGSSSMAHIEEIFEASSKVENLFKNLLQDELLSTSQETALLTNYAEFVRDYLHTLRQGESAQLADIYATFNAAW
DSYDFQVEERSEEIAPQGLISQLIELNIDQLLDAEFEFEKRARHEFPIYIEQLSAQAAQLIMHTNNRAAVGIHDFVVQLK
ASYDQLLAKPQLLHIDYAYDLYAQIHQDFIYLFDTLAAGQRVVLTEELQKDLNDLHAFVDQELEQFADSETPELEADTLV
PEQDQDAAETAFDLSAISQQVAKDQQLIDAAEANREFDPDLLDIFLEEAEELLVGIDQDLNSWSQDQSNIPALNNLMRYL
HTLKGGANMIQATHLGLIAHELETIYERVIHRQIQVSQPLIQIIRLVQDHLADRIQTIRDEKVDYPATYSIEILKNIESV
VVNGIATENSIAAVAELSSVHEILDELCLVEPAEKIEQIEEIHQAEALFATETADMGGFTPLTPVADDALLDEPEDRVNE
EFTEAASLVFAEDQQMRSIVEESFHEEAEELLEAAESLLQQWFEQRNDRSLLLQLQRTAHSLKGGARMVGLEPIAVIGYQ
LETVFEKIGLHNFNSNAYDALLETTLQWLRQAIFQQDYNNFYPLKHNLESIEFVDISVQLPSKVTQADLLNTPVNIEFVQ
GDGTEPPSMQGEWDSTQQLDNNNEMIRISADLVEKMIDLSGENAINRSRIEMDLGQLGNTLNDMELAIKRLADQLRRMEG
ELESQIIAKHGDEASRYKDFDPLEMDQYSSLNQLSKSLAESASDLVDFKTTLAEKIRDTEGLLLQQSRIQAEIQEGLMRT
RLVPFSRLLPRLQRIVRQTSSTLNRPAELVVQNTEGELDRTILERLVTPFEHMLRNAIDHGLEDQPRRAELNKPATGLIE
LNITRQGTDVVVTFSDDGKGIDVEKIKQKALQLGLIKADQHLESQEILQLIFHPGFTTAQAVTQISGRGVGLDVVQSDIK
ALGGHVSVESVLGQGTTFTIRVPTTVAVSDALMVKAGDQQFALPLAQIERIVRISPAALEEYFQSKDDFFTIDQTSYKLR
YLSEFVGNHSTPRLGGVMHSLPVLLIKGSTGQTIALLVDQLIGSRAQIVVKPIGQQFDSIGAIAGATILGDGQVCLILDG
QNIARQIQTTQRIKQGGDVRELHRHHDERRLIMIVDDSVTVRKVTSRLLERNGYDVVTAKDGVDAIEQLENVKPDLMLLD
IEMPRMDGFEVTNLVRHHDIHQHLPIIMITSRTGEKHRERAFSLGVSHYMGKPFQEDELLENIETLLAVARG

Nucleotide


Download         Length: 4539 bp        

>NTDB_id=786229 PGW99_RS08620 WP_273777271.1 1790120..1794658(-) (chpA) [Acinetobacter sp. GSS19]
ATGAAAGAAATATTAAAAAATTTAGTTGAAACGACGACGCTTCCAGAAGACAGTTATCTCGACCAAGATTCAGAAATTCT
TGATATTTTTGTTGAAGAAATAGAAGAAATTTTTGTTGAACTCGATCAGCTACTTGAACAGTGGATGAGCGATCCTGCTG
ACCATGACAGCCTTGTTAGTATCCGCCGTCACTTTCATACGCTGAAAGGTTCAGGGCGTATGGTTGGTGCTAAATCTGCC
GGGGAATTGGCCTGGACTGTAGAAGATACTTTAAACCGTGTTTTGGCTGGTGGTGTCGAATTGACCCCCGCTGTGCAGCA
GTATGTCAAAACGGTTTATCAGATTTTCAAGTACAAACTGTATGACAATTTTAAGAGTGTTACGGTTCACCAGATCGATT
TTCGACCATTGGTGCTTTTAGGCCAACAATTACAAAAACAGCAAAGTGTCGAGCCCGCACTTGAAGAACTGCTCGGATTG
GCAGATACGCTCAACAATACCGAGGCCAAAACTGGACTCGAATTGTTGGATGAGGCTGAATCTGAAAGCGTAATTGCAGA
AGAAAGCAATGACACCATGCTTACGGCTGAGCAAGTATCTTCAGATATGCAGGCTGAAACGCTGAGTATTTTCCTTGAAG
AATCTGATGAACACCTAGCTGTGATTGATCAGTTCTTGAATAAAATGCAACCGGATGCACGAGATTACAACAGTTTGATT
CGTGCACTTCACACATTGCGTGGCAGTTCTTCAATGGCGCATATTGAAGAAATCTTTGAAGCCAGCTCTAAGGTGGAAAA
CCTATTCAAGAATTTATTGCAGGATGAGCTCCTTTCTACTTCGCAAGAAACCGCTTTGCTGACCAACTATGCCGAGTTTG
TACGTGATTATTTACATACCTTACGTCAGGGCGAATCGGCACAACTGGCTGACATCTATGCAACTTTCAATGCCGCTTGG
GATAGCTATGATTTCCAAGTGGAAGAACGTAGTGAAGAAATCGCACCGCAAGGTTTGATTTCACAGTTAATCGAACTGAA
TATTGATCAGTTGCTAGATGCTGAGTTTGAATTTGAGAAACGTGCTCGTCACGAATTCCCGATCTATATTGAACAGTTAA
GTGCACAAGCTGCGCAGTTGATTATGCATACCAATAATCGTGCGGCAGTAGGTATCCATGATTTTGTTGTGCAGTTGAAA
GCCAGCTATGACCAACTTTTGGCCAAGCCTCAACTGTTACATATTGATTATGCTTATGATTTATATGCACAAATTCATCA
GGACTTTATCTACCTGTTTGATACTTTGGCAGCTGGCCAGCGTGTGGTCTTGACCGAAGAGCTGCAAAAAGACCTGAATG
ACCTGCATGCGTTTGTAGATCAGGAACTTGAGCAATTTGCCGATAGTGAAACACCTGAACTTGAAGCGGATACATTGGTT
CCAGAACAAGATCAGGATGCCGCAGAAACAGCATTTGACCTTTCTGCGATTTCACAACAAGTGGCGAAGGACCAGCAGTT
GATCGATGCAGCTGAAGCCAACCGTGAGTTTGATCCAGATTTGCTGGATATCTTCCTTGAAGAGGCAGAAGAACTGTTGG
TCGGCATTGACCAGGATCTCAATAGTTGGTCACAAGATCAGAGCAATATTCCGGCTTTAAATAACCTGATGCGTTATCTG
CATACCTTAAAAGGTGGTGCAAATATGATTCAGGCGACACACCTCGGTTTGATTGCTCATGAACTGGAAACGATTTATGA
GCGAGTGATTCACCGACAAATTCAGGTTTCACAGCCGTTGATTCAAATCATCCGTCTAGTACAGGATCACTTGGCGGATC
GTATTCAGACCATTCGTGATGAAAAGGTTGATTATCCAGCAACCTATAGCATTGAGATTCTGAAAAATATTGAGTCGGTT
GTGGTCAATGGTATTGCGACTGAGAACAGTATTGCTGCTGTTGCAGAATTGTCCAGTGTGCATGAGATTCTGGATGAGCT
ATGCCTTGTTGAACCAGCTGAGAAAATCGAGCAAATTGAAGAGATTCATCAGGCTGAAGCCTTATTCGCTACTGAAACGG
CTGATATGGGTGGCTTTACGCCATTAACCCCTGTTGCTGATGATGCTCTGCTTGATGAGCCTGAAGATCGAGTGAATGAA
GAATTCACGGAAGCTGCTTCTCTGGTATTTGCTGAAGATCAGCAGATGCGTTCGATTGTGGAAGAAAGTTTCCATGAAGA
AGCAGAAGAATTGCTAGAAGCTGCAGAGAGCTTGTTACAGCAATGGTTTGAACAGCGTAATGACCGTAGTCTGTTGCTAC
AGTTACAGCGTACAGCTCACAGCCTGAAGGGTGGTGCACGGATGGTTGGACTTGAGCCAATCGCCGTTATTGGTTATCAG
TTAGAAACTGTATTTGAGAAAATTGGTTTACATAACTTTAACTCGAATGCCTACGATGCCTTGTTGGAAACCACGCTGCA
GTGGCTTAGACAGGCAATTTTCCAGCAGGATTACAACAATTTCTATCCGCTTAAACACAACCTTGAAAGTATTGAGTTTG
TAGATATTAGCGTGCAGCTGCCGAGCAAAGTAACGCAGGCGGACTTGCTGAATACACCAGTCAATATTGAATTCGTGCAG
GGAGATGGTACAGAACCTCCATCGATGCAGGGTGAATGGGACAGCACACAACAACTGGACAATAATAATGAGATGATCCG
TATTTCAGCTGATTTGGTTGAAAAAATGATCGACTTGTCCGGTGAGAATGCAATTAACCGTTCGCGTATCGAGATGGACC
TGGGGCAACTCGGCAATACCCTGAACGATATGGAATTGGCCATCAAGCGTTTGGCGGATCAGTTGCGTCGTATGGAAGGC
GAATTGGAAAGTCAGATCATTGCCAAGCACGGTGATGAGGCTTCACGTTACAAAGACTTTGACCCGCTGGAAATGGACCA
ATATTCCTCTTTGAACCAGTTGTCAAAATCATTGGCGGAATCAGCTTCGGACTTAGTCGACTTTAAGACCACTTTGGCGG
AAAAAATCCGTGATACTGAAGGTCTGTTATTACAACAATCACGTATTCAGGCTGAGATTCAGGAAGGTCTGATGCGCACC
CGCTTGGTTCCATTCTCGCGTTTACTGCCACGTTTGCAACGTATTGTGCGTCAAACTTCCTCGACGTTAAACCGTCCAGC
AGAGTTGGTGGTACAGAATACCGAAGGTGAATTGGACCGCACTATTCTCGAGCGTCTGGTAACACCATTTGAGCATATGT
TACGTAATGCGATCGACCATGGTCTGGAAGATCAACCTCGTCGTGCAGAATTGAACAAGCCGGCAACTGGTTTGATTGAG
CTGAACATTACCCGTCAGGGCACGGATGTTGTGGTGACCTTTAGTGATGATGGTAAAGGGATTGATGTCGAGAAAATCAA
GCAAAAAGCCTTACAGCTTGGCTTGATTAAAGCGGATCAACATCTTGAATCACAAGAGATTCTACAGTTAATTTTCCATC
CAGGTTTTACCACCGCACAAGCTGTTACCCAGATTTCTGGACGGGGTGTGGGATTGGATGTTGTACAAAGCGATATCAAG
GCGCTGGGTGGTCACGTTTCTGTTGAATCGGTACTCGGTCAGGGTACAACCTTTACCATTCGTGTACCAACCACGGTAGC
GGTGAGTGATGCCTTGATGGTGAAAGCAGGTGATCAGCAATTTGCCTTACCATTGGCGCAAATTGAACGTATTGTACGTA
TTTCACCTGCAGCACTGGAAGAGTACTTCCAGAGCAAAGATGACTTCTTCACGATCGACCAGACCAGTTACAAATTACGT
TACTTGTCGGAATTTGTCGGCAACCATTCAACACCACGTTTGGGTGGCGTGATGCACTCCTTGCCGGTGTTGTTGATTAA
AGGATCCACAGGACAAACCATCGCCTTGCTCGTTGATCAGTTGATTGGTTCACGTGCGCAAATCGTAGTGAAACCGATAG
GTCAGCAGTTTGATAGTATTGGTGCCATTGCAGGTGCGACAATTCTCGGTGATGGTCAGGTGTGTTTGATTCTCGACGGT
CAGAATATTGCGCGTCAGATTCAAACGACACAGCGTATTAAACAGGGGGGTGATGTGCGTGAGTTACACCGTCATCATGA
TGAACGCCGCTTGATCATGATTGTGGATGACTCGGTGACTGTACGTAAGGTGACATCACGTCTGTTGGAGCGTAATGGTT
ATGATGTGGTGACCGCCAAAGATGGTGTGGATGCGATTGAGCAGCTAGAAAATGTCAAACCTGATCTGATGTTGTTAGAT
ATCGAAATGCCACGGATGGATGGTTTTGAAGTGACCAACTTGGTTCGTCACCATGACATTCACCAGCATTTGCCGATTAT
CATGATTACTTCGCGTACCGGTGAAAAACACCGTGAGCGGGCATTCAGCTTAGGCGTGTCACACTATATGGGTAAACCGT
TCCAGGAAGATGAATTGCTGGAAAATATTGAAACACTGTTAGCCGTTGCACGAGGATAA


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

62.932

100

0.639