Detailed information    

insolico Bioinformatically predicted

Overview


Name   chpA   Type   Regulator
Locus tag   JW980_RS12105 Genome accession   NZ_CP070866
Coordinates   2423839..2428317 (-) Length   1492 a.a.
NCBI ID   WP_205666956.1    Uniprot ID   -
Organism   Acinetobacter johnsonii strain XY27     
Function   regulation of type IV pilus assembly (predicted from homology)   
Competence regulation

Genomic Context


Location: 2418839..2433317
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  JW980_RS12075 (JW980_12075) elsL 2419889..2420392 (-) 504 WP_205666953.1 cell wall-recycling L,D-carboxypeptidase ElsL -
  JW980_RS12080 (JW980_12080) - 2420392..2420784 (-) 393 WP_205666954.1 YbaN family protein -
  JW980_RS12085 (JW980_12085) - 2420881..2421759 (+) 879 WP_205666955.1 DUF1853 family protein -
  JW980_RS12090 (JW980_12090) - 2421917..2422063 (+) 147 WP_010326244.1 entericidin A/B family lipoprotein -
  JW980_RS12095 (JW980_12095) dapE 2422180..2423313 (+) 1134 WP_176537359.1 succinyl-diaminopimelate desuccinylase -
  JW980_RS12100 (JW980_12100) - 2423379..2423834 (-) 456 WP_078388412.1 hypothetical protein -
  JW980_RS12105 (JW980_12105) chpA 2423839..2428317 (-) 4479 WP_205666956.1 Hpt domain-containing protein Regulator
  JW980_RS12110 (JW980_12110) - 2428482..2430554 (-) 2073 WP_205666957.1 methyl-accepting chemotaxis protein -
  JW980_RS12115 (JW980_12115) - 2430605..2431141 (-) 537 WP_004694490.1 chemotaxis protein CheW -
  JW980_RS12120 (JW980_12120) - 2431147..2431515 (-) 369 WP_004694491.1 response regulator -
  JW980_RS12125 (JW980_12125) pilG 2431543..2431926 (-) 384 WP_004694493.1 twitching motility response regulator PilG Regulator
  JW980_RS12130 (JW980_12130) - 2432207..2432845 (+) 639 WP_058869160.1 hypothetical protein -

Sequence


Protein


Download         Length: 1492 a.a.        Molecular weight: 166759.39 Da        Isoelectric Point: 4.3846

>NTDB_id=541152 JW980_RS12105 WP_205666956.1 2423839..2428317(-) (chpA) [Acinetobacter johnsonii strain XY27]
MKEILKHLVETTTLPEDSYLDQDAEILEIFVEEIEEIFVELDPLFEKWYAEPTHQETLLSIRRHFHTLKGSGRMVGAKSA
GETAWVVEDTLNRVISGAVPLTATVQKFAKTVFKLFQFKLYPIFKAVQEIDLDLRPLVLIGQQLQQNQSLEPALEELLQL
SNHLNSNDVVTGLELSDIEVVDSEPQVADASEQDDQVHDVLEETLAIFIEEAEDHLATIDQFLNVDETKVQDYNGLIRAL
HTLRGSSSMAQIEHVFNASSKVENLFKTLVQEEIVSTSKEISLLTQYAEFVRDYLHVLGRGTNEQLDVIYATFTTAWDNY
GFSIEDVADELNPQGMVSKLIELNIDLLLDAEFEFDQRAKVEYPDYIQHLGEQAKQLLEFTNNRAAQGIHDFTFELYAGY
QALLEKPELLNVDYAYELFGQAHQEFIHLFDTLAAGQRVILTEEVHKVLNELMAFVQQDVESTSTTVIEPVAEAIVSRNT
LQPSLDLAQISQQIASDHQYKQSNTANTNFDDDLLDIFLEEAEELLMGMDQDLNTWSKNGNDTAALNNLMRYLHTLKGGA
NMISAPFIGSIAHELESIYERVIRQQIATTPQLISIIRLVQDDVADRIQVIRTDKVDYPATATINVLHNIQSLVEGTTVT
TTVSEPLVEAFVAAVEEPLSNIDRTIEVEAAAVESATAIEEPSVVDNTDVTVVEQLDTPSLVQEEAVNAVEEAASLLSIV
EETFLEEAEEILATTDGLLKQWTEQRSDRSVLLQLQRAAHSLKGGARMAENEPVGAIAYELETTFEQFAVHNFSSNVYDP
LLQTAFEWLKQAIFKRDFSNYDGLKNSLASIDYVDVIAQLPTRVTQIDLLNAVPSFEFVQGDGTEPPAMLGEWKETTHLD
GGNEMIRISADLVEKMIDLSGENAINRSRIEMDLGQLGNTLNEMELAIKRLADQLRRMEGELESQIIAKHGSENSRYADF
DPLEMDQYSSLNQLSKSLAESASDLVDFKSTLAEKIRDAEGLLLQQSRIQAEIQESLMRTRLVPFSRMLPRLQRIVRQTA
STLNRPTELVVHNTEGELDRTILERLVTPFEHMLRNAIDHGIEDAEQRGAAKKSATGQIELNISRQGTDVIVSFKDDGKG
IDESTIKAKALNLGLIKADQVLDKQEILQFIFHPGFSTAKEVTQISGRGVGLDVVQSEIKALGGHVTVESEIGFGTTFII
RVPTTVAVSDALMVKAGDQQYAIPLAQIDRIVRIAPTALDQYFHSKDDQFKIDGVSYKLRYLSEFLSNQPIPRLSNIGHS
LPVLLIKGNSGQTIALLVDQLIGSRAQIVVKTVGQQFASIGAIAGATILGDGHVCLILDGQNIARQILSTKRVTHAADHR
DFGRHQDTRRLVMIVDDSVTVRKVTSRLLERQGFDIVTAKDGVDAMEQLESVKPDLMLLDIEMPRMDGFEVTNLVRHHEI
HQNLPIIMITSRTGEKHRERAFSLGVTHYMGKPFQEAELLANIQQLLAEKQG

Nucleotide


Download         Length: 4479 bp        

>NTDB_id=541152 JW980_RS12105 WP_205666956.1 2423839..2428317(-) (chpA) [Acinetobacter johnsonii strain XY27]
ATGAAAGAAATATTAAAACATTTAGTTGAAACGACAACGCTTCCGGAAGATAGTTATCTAGATCAAGATGCAGAAATTCT
TGAAATTTTTGTTGAAGAAATTGAAGAAATCTTCGTTGAGTTAGATCCATTATTTGAAAAGTGGTATGCTGAACCGACAC
ATCAAGAAACCTTGTTGAGCATACGTCGTCACTTCCATACCTTAAAAGGTTCTGGTCGTATGGTGGGGGCAAAGTCAGCA
GGTGAAACGGCGTGGGTAGTTGAAGACACCTTAAACCGTGTGATTTCAGGGGCTGTACCGCTTACAGCAACGGTTCAAAA
ATTTGCTAAGACAGTATTCAAACTGTTTCAATTTAAACTGTATCCTATATTCAAAGCGGTACAGGAAATTGATCTTGATC
TTCGTCCATTGGTTTTAATTGGACAACAATTACAACAAAATCAAAGTTTAGAACCTGCTCTAGAAGAGTTGCTACAACTG
TCTAATCATCTAAATAGTAATGATGTCGTGACAGGATTAGAGCTGAGCGATATTGAAGTGGTTGACTCTGAGCCGCAAGT
TGCAGACGCATCTGAACAGGATGATCAAGTACATGATGTCCTTGAAGAAACTTTAGCGATCTTCATTGAAGAAGCGGAAG
ACCATTTAGCGACTATAGATCAGTTCTTAAATGTAGATGAAACCAAAGTACAAGATTACAATGGTTTAATCCGTGCTTTA
CATACATTGCGCGGTAGTTCGTCTATGGCGCAAATTGAGCATGTCTTTAATGCCAGCTCAAAAGTTGAAAATCTATTTAA
AACCTTGGTTCAAGAAGAGATCGTTTCTACCTCGAAGGAGATCTCTTTACTCACCCAATATGCTGAATTTGTACGTGATT
ATTTACATGTGCTTGGGCGTGGTACGAACGAACAGCTTGACGTGATTTACGCCACGTTCACTACGGCTTGGGATAACTAT
GGTTTCAGTATTGAAGACGTAGCTGATGAGCTAAACCCACAAGGTATGGTCTCGAAGCTGATTGAGTTAAATATTGACCT
GTTGCTTGATGCCGAGTTTGAGTTTGATCAGCGTGCTAAGGTTGAATATCCAGACTATATTCAGCACTTAGGTGAACAAG
CAAAACAATTGCTGGAATTCACCAATAACCGTGCTGCTCAAGGAATTCATGATTTTACTTTTGAGCTATATGCAGGTTAT
CAAGCCTTACTGGAAAAGCCTGAATTACTCAATGTAGATTATGCATACGAGTTATTTGGTCAGGCACATCAAGAATTTAT
CCATTTATTTGACACTTTAGCTGCGGGTCAGCGCGTCATTCTGACTGAAGAAGTGCATAAAGTTCTGAATGAATTAATGG
CCTTCGTACAGCAAGATGTTGAATCGACTTCGACGACCGTAATTGAACCTGTTGCTGAGGCTATTGTTTCTAGAAATACT
TTACAACCAAGCCTTGATCTTGCGCAGATTTCGCAGCAAATTGCATCGGATCATCAGTACAAGCAATCGAATACGGCCAA
TACCAATTTTGATGATGATTTGCTTGATATCTTCTTGGAAGAAGCTGAAGAATTATTGATGGGGATGGATCAGGATCTTA
ATACTTGGTCTAAAAATGGCAATGATACCGCGGCACTCAATAATTTAATGCGTTATTTGCACACCTTAAAAGGTGGTGCT
AATATGATTTCTGCACCTTTTATTGGTTCGATTGCACACGAATTAGAGTCTATTTATGAGCGTGTGATTCGTCAGCAAAT
AGCCACAACGCCACAGTTGATCAGCATCATACGTTTAGTACAGGATGACGTCGCAGACCGAATTCAGGTCATTCGTACCG
ATAAGGTTGATTATCCAGCAACAGCGACGATCAATGTACTGCATAACATTCAGAGCTTAGTTGAGGGTACGACTGTTACA
ACTACAGTATCCGAGCCTTTAGTTGAAGCGTTTGTTGCGGCAGTTGAAGAACCTTTATCTAATATAGATAGAACGATTGA
AGTTGAGGCAGCTGCGGTTGAGTCAGCAACTGCGATTGAAGAGCCGAGTGTAGTTGATAACACTGACGTTACTGTCGTTG
AACAGCTGGATACTCCGTCACTTGTCCAAGAAGAAGCAGTCAACGCTGTTGAAGAAGCAGCTAGTCTTTTATCAATTGTT
GAAGAAACCTTCTTGGAAGAAGCTGAAGAAATTTTAGCGACTACGGATGGCTTACTGAAACAGTGGACTGAACAACGTAG
TGACCGTAGTGTGTTACTACAATTGCAACGTGCTGCGCACAGCTTAAAAGGCGGCGCGCGTATGGCGGAGAATGAACCCG
TTGGTGCGATTGCTTATGAACTAGAAACCACATTTGAGCAATTTGCTGTACATAATTTCAGTTCAAACGTGTATGACCCA
TTATTGCAGACTGCATTTGAATGGTTAAAACAAGCCATCTTCAAACGTGATTTTAGTAATTATGATGGTCTGAAAAACAG
CTTAGCATCTATTGACTATGTGGATGTGATTGCGCAATTACCAACGCGTGTAACACAAATTGATTTACTTAATGCGGTAC
CAAGTTTTGAGTTTGTACAGGGTGATGGTACTGAGCCGCCAGCAATGCTGGGTGAGTGGAAAGAAACGACACACTTGGAT
GGTGGTAATGAGATGATCCGTATCTCAGCTGATTTGGTTGAGAAAATGATCGACCTGTCAGGTGAAAATGCGATTAACCG
TTCGCGTATAGAGATGGACTTAGGTCAGCTCGGCAATACGTTGAACGAGATGGAGCTTGCAATTAAACGTTTGGCGGATC
AGTTACGTCGAATGGAAGGTGAGCTTGAAAGTCAAATTATTGCGAAGCACGGTTCTGAAAACTCGCGCTACGCAGACTTT
GACCCCTTGGAAATGGACCAATACTCATCGCTCAACCAATTGTCTAAATCCTTAGCAGAATCGGCTTCGGATTTGGTCGA
TTTTAAGAGCACTTTGGCTGAGAAAATTCGTGATGCGGAAGGCTTGTTATTACAACAATCCCGTATTCAAGCGGAGATTC
AAGAAAGCTTAATGCGGACACGTTTGGTACCGTTCTCACGTATGCTGCCGCGTTTGCAACGTATTGTACGTCAGACCGCA
TCAACTTTGAACCGTCCAACGGAATTGGTCGTCCATAACACCGAAGGTGAATTAGACCGTACGATTCTTGAACGTTTGGT
TACGCCGTTTGAGCATATGCTACGTAACGCAATCGACCACGGTATTGAAGATGCGGAACAACGTGGCGCTGCGAAAAAAT
CAGCGACAGGCCAAATTGAACTGAACATTAGTCGTCAAGGTACAGATGTTATAGTCAGCTTTAAAGATGATGGTAAGGGT
ATTGATGAAAGCACGATTAAAGCGAAAGCGCTAAACCTAGGTTTAATTAAAGCCGATCAAGTGCTAGATAAACAGGAAAT
CTTACAGTTTATTTTCCATCCGGGTTTCAGTACGGCCAAAGAAGTGACGCAAATTTCTGGACGTGGTGTCGGTCTTGATG
TGGTACAAAGTGAAATTAAAGCACTGGGTGGACATGTCACGGTTGAATCGGAAATTGGTTTCGGCACAACCTTCATTATT
CGCGTACCGACTACGGTAGCGGTGAGTGATGCGTTGATGGTGAAAGCCGGTGATCAACAATATGCGATTCCATTGGCGCA
GATTGATCGTATTGTGCGTATTGCTCCAACAGCATTGGATCAGTATTTCCACAGCAAAGATGACCAATTCAAAATTGATG
GCGTGAGTTATAAATTGCGCTATTTATCTGAGTTTTTATCCAATCAGCCGATTCCGCGTTTGAGTAATATTGGACATTCA
TTGCCGGTGTTATTGATTAAAGGCAATAGTGGACAAACCATTGCATTATTAGTCGATCAGCTCATTGGTTCACGTGCGCA
AATTGTAGTGAAGACGGTTGGACAACAGTTTGCCAGCATTGGTGCAATTGCGGGTGCAACGATTTTGGGTGATGGCCATG
TGTGCTTGATTTTAGATGGTCAGAACATTGCACGTCAGATTTTAAGTACCAAGCGTGTGACGCATGCTGCTGATCATCGT
GATTTTGGTCGTCATCAGGATACGCGTCGTTTAGTGATGATTGTGGATGACTCAGTTACGGTTCGTAAGGTCACATCGCG
CTTATTAGAGCGCCAAGGCTTTGATATTGTGACAGCAAAAGATGGTGTCGATGCGATGGAGCAGCTGGAGAGTGTTAAAC
CAGACTTGATGTTGCTAGATATTGAAATGCCACGTATGGATGGTTTCGAAGTAACGAACTTGGTTCGTCACCACGAAATT
CACCAGAACTTGCCGATTATTATGATTACATCGCGTACGGGTGAAAAACACCGTGAACGTGCTTTCAGCTTGGGCGTGAC
ACACTACATGGGCAAACCATTCCAAGAGGCAGAATTACTTGCCAACATTCAGCAACTATTGGCTGAAAAGCAGGGGTAA


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

60.858

100

0.618