Detailed information    

insolico Bioinformatically predicted

Overview


Name   chpA   Type   Regulator
Locus tag   DJ533_RS14685 Genome accession   NZ_CP029397
Coordinates   2558019..2562536 (-) Length   1505 a.a.
NCBI ID   WP_065994142.1    Uniprot ID   A0A2S2FFH8
Organism   Acinetobacter defluvii strain WCHA30     
Function   regulation of type IV pilus assembly (predicted from homology)   
Competence regulation

Genomic Context


Location: 2553019..2567536
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  DJ533_RS14660 (DJ533_14695) - 2554650..2555015 (-) 366 WP_065994137.1 YbaN family protein -
  DJ533_RS14665 (DJ533_14700) - 2555097..2555951 (+) 855 WP_065994138.1 DUF1853 family protein -
  DJ533_RS14670 (DJ533_14705) - 2556078..2556218 (+) 141 WP_065994139.1 entericidin A/B family lipoprotein -
  DJ533_RS14675 (DJ533_14710) dapE 2556370..2557503 (+) 1134 WP_065994140.1 succinyl-diaminopimelate desuccinylase -
  DJ533_RS14680 (DJ533_14715) - 2557548..2558009 (-) 462 WP_065994141.1 hypothetical protein -
  DJ533_RS14685 (DJ533_14720) chpA 2558019..2562536 (-) 4518 WP_065994142.1 Hpt domain-containing protein Regulator
  DJ533_RS14690 (DJ533_14725) - 2562673..2564745 (-) 2073 WP_065994143.1 methyl-accepting chemotaxis protein -
  DJ533_RS14695 (DJ533_14730) - 2564795..2565328 (-) 534 WP_065994144.1 chemotaxis protein CheW -
  DJ533_RS14700 (DJ533_14735) - 2565331..2565699 (-) 369 WP_065994145.1 response regulator -
  DJ533_RS14705 (DJ533_14740) pilG 2565726..2566103 (-) 378 WP_065994146.1 twitching motility response regulator PilG Regulator
  DJ533_RS14710 (DJ533_14745) - 2566477..2567031 (+) 555 WP_089024788.1 hypothetical protein -

Sequence


Protein


Download         Length: 1505 a.a.        Molecular weight: 170555.13 Da        Isoelectric Point: 4.4149

>NTDB_id=292231 DJ533_RS14685 WP_065994142.1 2558019..2562536(-) (chpA) [Acinetobacter defluvii strain WCHA30]
MKKILKDLVENINLPEDEFVDQDPEILEIFVEEVEEIIENIQPLLNQWLNDPSDAELLTVIRRNFHTLKGSGRMVGAKSS
GELAWAVEDTLNRVISKSIDLTSSIQRYVNAVFNIYKFKLYNDFAKVQAHPLDLRPLVLLGQQFQQNLSIEPALEELLVL
SEQLNSPDVVTGLEDSIDASIDVPEVEVAQVEELPSSSEDAIAPVTVTPPVQPEVVPMPASRDENKEAVEEAEDRRFLAE
TIAIFIEESEEHLAAIDSFLSIEKHTSDHYNRLIRALHTLRGSSAMAHVDDVFHASSKVEQLFKVLLKDDTQHSTNENAL
LTHYTEFVRDYLHTLTQNNAAEQQAIYQKFNDAWERYDFQTECLEPNEQQQDLVSQLVDLNIEHLLDAEFDFDQRAKTDY
PEYFENLLQEANVLVEHTDNRAAQGIHDISLALKTAYEHILVEKSLLNTDYAFELFNQAHQEFIHLFDALASGQRVVLSE
QSKQILEQLHDYVTQDLELFAAETVTNTEFESVERPVVEQAVEAEFNSNQIYSLIIKDQQYLHSAESFKDFDAEVLDIFL
EEADELLVGIDQDLSAWFADNENLTSLNNLMRYLHTLKGGANMVQAEHIGSIAHHLESIYERIIKQQITVNTGLMQTIRM
IQDEIAERIQVIREQGIDYPATHVIEILQAIEKQQPIDKIFSVTPTVESPIVEQVESAEIEQPTLSETVQDVISPSETVS
SAEHEMSDEQIAESIAQEAFVEEADELLIRANEILSKWFDERSNRSLLLQLQRIAHTLKGGAKMVNNTQVSEIAYELENT
FERFGLHNFNSNAYDQLILKAFNWLKNAILLNEYAHFDSIKSALKNIQYVDVSAQLPERLTSGDVLWDNPVVEFIQGDGS
EPPSMLGEWGQVELNENNNEMIRISADLIEKMIDLSGENSINRSRIEMDLGQFGNTLVEMELAIKRLADQLRRMEGELES
QIIAKHGDSNSRYADFDPLEMDQYSSLNQLSKSLAESASDLVDFKTTLAEKIRDTEGLLLQQARIQAEIQEGLMRTRLVP
FTRLLPRLQRLVRQTSSTLNRPTELIVHNTEGELDRNILEKLMSPLEHMLRNAVDHGIEETEVRQRLNKPLTGRIELNIS
RQGTDVLVEFKDDGKGIDPKVIKAKALQKGLIQQEQNLTDEEILQYIFHHGFSTAQQVTQISGRGVGLDVVQSEIKSLGG
QVSVASTLGQGSTFTIRVPTTVAVSDALMVKVGDQQFAVPLSQIDRIVRIAPSTLEEYFNSQKQDFVIDQQPYNLRYLSE
FVAHQAMPRFSGIAHSLPVLLIKNNTGKNTALLVDQLIGSRSQIVVKPIGKQFTSIGAVAGATILGDGQVCLILDAQNIA
RQTLSSKRQVAKDQRELTRHRDQRHLVMIVDDSVTVRKVTSRLLERHNFDVITAKDGVDAIEQLENVKPDLMLLDIEMPR
MDGFEVTNWIRHHEIHQDLPIIMITSRTGEKHRERAFSLGVTNYMGKPFQEADLLENIQNLLVAQ

Nucleotide


Download         Length: 4518 bp        

>NTDB_id=292231 DJ533_RS14685 WP_065994142.1 2558019..2562536(-) (chpA) [Acinetobacter defluvii strain WCHA30]
ATGAAAAAAATATTAAAAGATTTAGTGGAAAATATAAATCTTCCTGAAGATGAGTTTGTGGATCAAGATCCAGAAATTTT
AGAAATTTTCGTGGAAGAAGTTGAAGAGATTATTGAAAATATACAGCCATTATTAAATCAGTGGTTAAATGATCCTTCAG
ATGCAGAACTTTTGACGGTGATTCGCCGTAACTTCCATACCTTAAAAGGTTCTGGTCGGATGGTTGGAGCAAAGTCGTCA
GGTGAGTTGGCTTGGGCTGTAGAAGATACCTTAAATCGCGTTATTTCAAAAAGTATTGACTTAACATCGTCGATCCAACG
CTATGTAAATGCAGTATTTAATATCTATAAATTTAAACTGTATAATGACTTTGCCAAAGTACAAGCACACCCATTGGACT
TACGACCATTGGTTTTGTTGGGACAGCAGTTTCAACAAAACTTAAGTATTGAACCCGCCCTTGAAGAACTCTTGGTGCTT
TCAGAGCAGTTAAATAGTCCTGATGTGGTCACAGGCTTAGAAGATTCAATTGATGCTAGCATTGATGTACCTGAGGTTGA
AGTGGCTCAAGTCGAAGAGCTTCCGAGCTCAAGCGAAGATGCAATTGCACCAGTAACAGTTACCCCTCCTGTCCAACCCG
AAGTCGTGCCGATGCCTGCTTCACGTGATGAGAATAAGGAGGCGGTTGAAGAAGCTGAGGATCGTCGATTTCTGGCCGAG
ACTATTGCAATCTTTATTGAAGAGTCTGAAGAACATTTGGCGGCAATTGACTCGTTCTTAAGCATCGAAAAACATACTTC
AGATCATTATAATCGACTTATCCGTGCATTACATACACTTCGTGGTAGTTCTGCGATGGCGCATGTAGATGATGTGTTTC
ATGCCAGTAGTAAAGTTGAGCAGTTGTTTAAAGTCTTATTGAAAGATGATACGCAACACAGTACCAATGAAAATGCTCTG
TTGACGCATTATACTGAATTTGTTCGTGATTATTTACATACCCTGACTCAGAATAATGCTGCTGAGCAACAGGCTATTTA
TCAAAAGTTTAATGATGCTTGGGAACGTTATGATTTCCAAACGGAATGTTTAGAGCCAAATGAACAGCAGCAAGATTTAG
TTTCACAATTGGTAGATTTAAACATCGAACATTTGTTAGATGCTGAGTTCGATTTTGATCAAAGAGCAAAAACAGATTAT
CCAGAATATTTTGAAAATTTACTGCAAGAAGCCAATGTATTAGTTGAACATACAGATAATCGGGCTGCTCAAGGTATTCA
TGATATTAGTTTGGCTTTAAAAACCGCATATGAACATATTTTAGTTGAAAAAAGTCTATTAAATACAGACTATGCTTTTG
AATTGTTTAACCAAGCACATCAAGAGTTTATTCATTTGTTTGATGCTTTGGCTTCAGGGCAACGGGTTGTCTTATCAGAG
CAAAGTAAACAAATTTTAGAACAATTACATGACTATGTAACGCAAGATCTAGAGTTGTTCGCTGCTGAAACTGTAACAAA
TACTGAGTTTGAGTCTGTTGAACGGCCAGTAGTGGAGCAGGCAGTAGAGGCTGAGTTTAATAGCAATCAAATCTATTCGT
TGATTATAAAAGATCAGCAATACCTTCATTCGGCTGAAAGTTTCAAAGACTTTGATGCAGAGGTTTTGGATATTTTTCTT
GAAGAAGCTGATGAGCTTTTGGTGGGAATCGATCAAGATCTATCAGCTTGGTTTGCTGATAATGAAAATCTAACCTCATT
AAATAATTTGATGCGTTATTTGCATACTTTAAAAGGTGGTGCAAATATGGTGCAAGCGGAACATATCGGTTCAATTGCCC
ATCATTTAGAGTCTATTTATGAGCGAATTATTAAGCAGCAAATCACAGTAAATACAGGTTTGATGCAAACTATTCGTATG
ATTCAGGATGAGATAGCAGAGCGTATCCAAGTTATTCGTGAGCAAGGGATTGATTATCCTGCAACGCATGTCATTGAAAT
TTTGCAGGCGATTGAAAAGCAACAACCAATTGATAAGATTTTCAGTGTAACACCGACAGTAGAATCACCAATTGTAGAGC
AAGTAGAATCTGCTGAAATCGAACAGCCGACACTTTCTGAAACAGTTCAAGATGTTATAAGTCCATCTGAAACAGTTTCA
AGCGCTGAACACGAAATGAGTGATGAGCAGATTGCGGAAAGTATTGCTCAAGAAGCTTTTGTGGAAGAAGCAGATGAATT
ATTAATTCGTGCGAATGAGATACTAAGTAAATGGTTTGATGAGCGCAGTAATCGTAGTTTGTTATTACAATTACAACGTA
TTGCCCATACTTTAAAAGGTGGGGCGAAAATGGTCAATAATACGCAAGTTTCTGAAATTGCGTATGAATTGGAAAATACA
TTTGAGCGTTTTGGTTTACATAACTTTAACTCAAATGCTTATGATCAGCTCATTTTAAAAGCATTTAATTGGTTGAAAAA
TGCTATTTTATTAAATGAATATGCGCATTTTGATTCAATTAAATCGGCTTTGAAAAACATTCAGTATGTGGATGTTTCTG
CTCAATTGCCAGAAAGACTGACCAGTGGAGATGTTCTTTGGGATAACCCAGTAGTTGAATTTATTCAGGGCGATGGTAGT
GAGCCACCATCTATGCTCGGTGAATGGGGACAAGTTGAACTCAATGAAAATAATAATGAGATGATTCGTATCTCGGCAGA
TTTAATCGAAAAAATGATTGATTTGTCGGGCGAAAACTCCATTAACCGTTCTCGTATTGAGATGGATTTAGGACAATTTG
GTAATACTTTGGTGGAAATGGAGTTGGCGATAAAACGTTTGGCTGACCAATTGCGCCGAATGGAAGGAGAGCTAGAATCC
CAGATTATTGCAAAACATGGCGATTCAAATTCACGTTATGCTGATTTTGATCCATTGGAAATGGACCAATATTCATCATT
AAATCAGTTGTCTAAATCACTCGCAGAATCTGCATCCGACTTGGTGGATTTCAAAACCACTCTGGCAGAAAAAATTCGCG
ATACAGAAGGCTTATTACTACAACAAGCACGTATTCAAGCTGAAATTCAAGAAGGCTTAATGCGGACTCGTTTGGTGCCA
TTTACCCGTTTATTACCACGCTTGCAACGCCTAGTGCGTCAAACTTCTTCGACCTTAAACCGTCCAACAGAGCTGATTGT
ACATAATACAGAAGGTGAGTTGGATCGAAATATTCTTGAAAAGTTAATGTCGCCTTTAGAGCATATGCTACGAAATGCAG
TTGACCACGGTATTGAAGAAACCGAAGTACGTCAGCGTTTAAATAAACCATTAACAGGGCGTATTGAGTTAAACATTAGC
CGTCAAGGTACCGATGTACTGGTTGAATTTAAAGACGATGGTAAGGGTATTGATCCAAAAGTGATTAAAGCCAAAGCATT
GCAAAAAGGTTTAATTCAGCAAGAGCAGAATCTAACTGATGAAGAAATTTTGCAATATATTTTCCATCATGGTTTCAGTA
CAGCACAACAAGTTACGCAGATTTCAGGACGTGGTGTTGGGTTAGATGTTGTACAAAGTGAAATTAAATCACTCGGTGGT
CAAGTTAGTGTTGCTTCGACCTTAGGTCAAGGTTCTACATTTACTATTCGTGTACCAACCACAGTGGCAGTTAGTGATGC
CTTAATGGTGAAAGTGGGTGATCAGCAATTTGCTGTACCATTGTCACAAATTGATCGTATCGTCCGAATTGCACCAAGTA
CATTGGAAGAGTATTTTAATAGTCAGAAACAAGATTTTGTTATTGACCAACAGCCTTATAACTTACGCTATTTGTCAGAG
TTTGTTGCACACCAAGCTATGCCTCGTTTTTCTGGCATTGCACACTCCTTACCCGTATTGTTAATTAAAAATAATACCGG
TAAAAATACAGCATTGTTGGTAGATCAATTGATTGGATCACGTTCACAAATTGTGGTGAAACCAATTGGTAAGCAATTTA
CATCCATTGGTGCTGTAGCTGGTGCGACGATTCTAGGTGATGGTCAAGTTTGTTTGATCTTGGATGCGCAGAATATCGCG
CGTCAAACTTTGAGTAGTAAACGTCAAGTTGCGAAGGATCAACGTGAGTTAACACGTCATCGTGACCAACGTCATTTAGT
CATGATTGTCGATGACTCCGTGACGGTACGTAAAGTAACTTCTCGCTTGCTTGAGCGTCACAATTTTGATGTGATCACAG
CAAAAGACGGCGTAGATGCGATTGAGCAGTTGGAAAATGTCAAACCTGACTTGATGTTGCTTGATATTGAAATGCCACGC
ATGGATGGTTTTGAGGTAACCAATTGGATACGTCACCATGAAATCCATCAGGATTTACCAATTATCATGATCACTTCTAG
AACAGGGGAAAAACATCGTGAACGCGCATTTAGTTTAGGTGTAACGAACTATATGGGTAAACCATTCCAAGAAGCTGATT
TATTAGAAAATATTCAGAATTTATTGGTCGCACAATAA


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

57.4

100

0.593


Multiple sequence alignment