Detailed information    

insolico Bioinformatically predicted

Overview


Name   chpA   Type   Regulator
Locus tag   E3H47_RS11295 Genome accession   NZ_CP038022
Coordinates   2408016..2412398 (-) Length   1460 a.a.
NCBI ID   WP_138000846.1    Uniprot ID   -
Organism   Acinetobacter radioresistens strain DD78     
Function   regulation of type IV pilus assembly (predicted from homology)   
Competence regulation

Genomic Context


Location: 2403016..2417398
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  E3H47_RS11265 (E3H47_11270) elsL 2404021..2404530 (-) 510 WP_005027614.1 cell wall-recycling L,D-carboxypeptidase ElsL -
  E3H47_RS11270 (E3H47_11275) - 2404534..2404941 (-) 408 WP_005018778.1 YbaN family protein -
  E3H47_RS11275 (E3H47_11280) - 2405047..2405916 (+) 870 WP_119879576.1 DUF1853 family protein -
  E3H47_RS11280 (E3H47_11285) - 2406054..2406194 (+) 141 WP_005018775.1 entericidin A/B family lipoprotein -
  E3H47_RS11285 (E3H47_11290) dapE 2406339..2407475 (+) 1137 WP_138000845.1 succinyl-diaminopimelate desuccinylase -
  E3H47_RS11290 (E3H47_11295) - 2407536..2408000 (-) 465 WP_005027621.1 hypothetical protein -
  E3H47_RS11295 (E3H47_11300) chpA 2408016..2412398 (-) 4383 WP_138000846.1 Hpt domain-containing protein Regulator
  E3H47_RS11300 (E3H47_11305) - 2412564..2414645 (-) 2082 WP_138000847.1 methyl-accepting chemotaxis protein -
  E3H47_RS11305 (E3H47_11310) - 2414691..2415227 (-) 537 WP_005018769.1 chemotaxis protein CheW -
  E3H47_RS11310 (E3H47_11315) - 2415232..2415600 (-) 369 WP_005018768.1 response regulator -
  E3H47_RS11315 (E3H47_11320) pilG 2415622..2416005 (-) 384 WP_005018759.1 twitching motility response regulator PilG Regulator
  E3H47_RS11320 (E3H47_11325) - 2416343..2416924 (+) 582 WP_005406853.1 hypothetical protein -

Sequence


Protein


Download         Length: 1460 a.a.        Molecular weight: 164942.73 Da        Isoelectric Point: 4.4120

>NTDB_id=351508 E3H47_RS11295 WP_138000846.1 2408016..2412398(-) (chpA) [Acinetobacter radioresistens strain DD78]
MKQILKDLIGTTTLPEDSYLDQDAEILEIFVEELEEIFTDLDVLIQQWIKQPEQQDKLTSIRRYFHTLKGSGRMVGAKSS
GELAWTVEDLLNRIIAKTQAFTLAISRYVELVFKIYKYKLFYNFQNSQPHVIDLRPLVLIGQQLQQQGSLEPALEELLEL
SWTLCSPETVTGLELVDHTAETLPPLDVEKLEIHEEFDSLTAETLAIFLEESEEHLATIDEFLNNNEQGSNYNALIRALH
TLRGSSAMAQVEHIFEASSKVENLFKTMLQDELVSTSNETALLTHYAEFVRDYLYILKQECNIEQLEQVYQTFNHAWENY
GFHQEPVDDLVNPQGLVSRLLELEINQLLDAEFEFDQRARTEYPEYLQLLVQQAQELVEHTRNRASQGVYDFTLELLQSY
QQLLAKPQLLNLDYAYELYTQAHQQLIYLFDTLAAGQRVSLSPAHQSLLEELSAFVQQEIQQVEELSTVTEPFKAPVDVA
VLEHTFNLGELSARIAADKALMHFEHSNQVTDADLRDIFLEEAEELLAGMDSDLNSWTKESGQVTALNNLMRYLHTLKGG
ANMVQATHMGLIAHELESIYQRIINGQVQVSTVLMSIIRLVQDELAERIQILREQQIDYPAPATIEILKNIESISTGVLV
TTAEPKVAEEKLSESSQNIESNIADCTLADAEIAEHSEELQTDEQVRSIVEEVFLEEAEELLQTAHKLLDQWVEERSNRS
LLLQLQRNAHSLKGGARMAELEPVAVIAYALENTFEQFGLHNLTTSVYDPLLHTALRWLENAIFKEQYENFDSLKHSLDS
IQFTEIPAQLINQIPADNIVADGSLFEFVHGDGTEPPSMMGEWDNTERTENNEMIRISADLVEKMIDLAGENSINRSRIE
MDVGQVGSILSDMELAIQRLADQLRRMEGELESQIIAKHGTENSRYSDFDPLEMDQYSSLNQLSKSLAESASDLLDFKTT
LSEKIRDTEGLLLQQSRIQAEIQENLMRTRLVPFSRLLPRLQRIARQTSSALNRPAELVVQNTEGELDRNILERLVTPLE
HMLRNAIDHGIETSEQRLKQGKPESGRIELNINRQGTDVIITFTDDGQGINLDKLKNKALERGLIGTEQKLEAEELAQLI
FHPGLSTAAEITQISGRGVGLDVVQSSIKAMGGHVTVESVQGQGTTFTIRVPTTVAISDALMVKAGDQQYAVPLAQIERI
VRISPSMLEDYFAGKEDTFRIDNMYYKLRYLSEFVANQSLPRLTGIAHSLPVLLIKGSSGQTVALLVDQLVGSRAQIVVK
PVGQQLASVGAVAGATILGDGQVCLILDGQYIARQVQSSLRVKEVKESRELHRFNDERRLIMIVDDSVTVRKVTSRLLER
QGYDVVTAKDGVEAIEQLESIKPDLMLLDIEMPRMDGFEVTNLVRHHDVHRNMPIIMITSRTGEKHRERAFALGATQYMG
KPFQEADLLANIEALLEVMV

Nucleotide


Download         Length: 4383 bp        

>NTDB_id=351508 E3H47_RS11295 WP_138000846.1 2408016..2412398(-) (chpA) [Acinetobacter radioresistens strain DD78]
ATGAAACAAATACTAAAAGACCTGATTGGAACAACGACTCTTCCTGAAGATAGCTATCTTGACCAAGATGCAGAGATTCT
TGAAATTTTTGTTGAAGAACTAGAAGAAATCTTTACTGATTTGGATGTTTTGATCCAGCAGTGGATAAAGCAGCCTGAGC
AGCAGGACAAGCTGACCAGTATTCGCCGTTATTTCCATACCTTAAAAGGCTCCGGCCGAATGGTAGGAGCTAAAAGTTCC
GGCGAGTTGGCTTGGACGGTTGAAGATCTCTTGAATCGAATAATTGCTAAAACACAAGCTTTTACCCTGGCGATCAGTCG
TTATGTAGAATTAGTCTTTAAGATTTACAAATACAAGTTATTTTATAACTTTCAAAATAGTCAGCCTCATGTGATTGATT
TGCGTCCCCTCGTATTGATCGGGCAACAACTGCAACAGCAGGGCAGTCTTGAACCGGCACTTGAGGAATTACTGGAGCTT
AGCTGGACCTTATGTTCGCCTGAGACAGTCACCGGGCTTGAGCTGGTGGATCATACAGCAGAGACTCTACCACCACTAGA
TGTAGAGAAGCTTGAAATTCACGAGGAATTTGATTCATTAACTGCCGAGACACTGGCGATCTTTCTTGAAGAGTCGGAAG
AACATCTGGCAACTATTGATGAGTTCTTGAATAATAATGAACAGGGCAGTAACTATAACGCTCTGATCCGCGCTTTACAC
ACTTTGCGTGGCAGCTCGGCCATGGCTCAGGTAGAACACATATTTGAAGCAAGTAGTAAAGTTGAGAACCTGTTTAAAAC
CATGCTGCAAGATGAGCTGGTATCTACTTCAAATGAAACCGCTTTACTTACTCATTATGCTGAATTTGTAAGGGACTATC
TCTACATTCTAAAACAGGAATGTAATATAGAACAGTTGGAACAGGTTTATCAGACCTTTAATCATGCTTGGGAAAACTAC
GGATTCCATCAAGAACCTGTGGATGATCTCGTGAACCCTCAAGGTCTGGTTTCAAGGCTCCTCGAGCTTGAGATCAACCA
GTTGCTAGATGCCGAGTTCGAGTTTGATCAGCGTGCCCGTACCGAATACCCGGAATATTTACAGCTTTTGGTACAACAAG
CACAGGAACTGGTTGAACATACACGAAACCGTGCCTCCCAAGGTGTATATGATTTTACGTTAGAACTACTTCAGAGCTAT
CAGCAGCTCTTGGCAAAGCCACAGCTATTAAATCTTGATTATGCATATGAACTTTATACTCAAGCTCATCAGCAGCTGAT
TTATCTGTTTGATACGCTTGCAGCGGGACAGCGTGTCAGCCTGAGCCCGGCTCATCAAAGTCTGCTTGAAGAATTATCTG
CATTTGTACAGCAAGAAATACAACAGGTAGAAGAGTTGTCCACTGTTACTGAGCCTTTTAAAGCTCCGGTTGACGTAGCA
GTTTTGGAACATACTTTCAACCTGGGAGAGCTTTCAGCACGTATAGCGGCTGATAAAGCGCTGATGCATTTTGAACATAG
TAATCAGGTTACTGATGCTGATCTGCGCGATATCTTCTTGGAAGAGGCCGAAGAATTACTGGCTGGTATGGATAGTGACC
TGAACAGTTGGACAAAAGAATCCGGCCAAGTTACTGCTCTGAACAATCTGATGCGTTATTTGCATACCTTAAAAGGTGGT
GCAAACATGGTGCAGGCCACCCATATGGGATTAATTGCACATGAGCTGGAAAGCATTTATCAGAGAATTATTAACGGGCA
GGTTCAGGTCTCTACTGTACTGATGAGTATTATCCGGCTGGTACAGGATGAGCTTGCAGAACGCATCCAGATACTACGTG
AACAGCAGATTGACTACCCGGCGCCAGCAACTATTGAAATCCTCAAAAATATTGAGTCGATTAGCACTGGTGTATTAGTG
ACTACGGCTGAGCCAAAAGTAGCAGAAGAGAAGCTGTCCGAGTCGAGCCAAAATATTGAATCAAATATAGCTGATTGTAC
ACTTGCGGATGCGGAAATCGCTGAGCATTCCGAAGAGTTACAAACAGATGAACAGGTAAGGTCAATTGTTGAAGAGGTTT
TTCTCGAGGAAGCCGAAGAGCTGTTACAGACCGCTCATAAATTGCTAGATCAATGGGTAGAAGAGCGCAGTAACCGGAGT
CTATTGCTACAGCTGCAACGGAATGCTCATAGTCTTAAGGGTGGCGCACGGATGGCCGAGCTTGAGCCGGTAGCCGTGAT
TGCTTATGCGCTGGAAAATACTTTTGAACAATTTGGTCTGCACAATCTTACCACCAGTGTCTATGACCCGCTTTTACATA
CTGCTTTACGCTGGTTGGAAAATGCTATCTTCAAAGAGCAGTATGAAAACTTTGACAGTTTGAAGCACAGCTTGGACTCG
ATCCAGTTTACTGAAATTCCTGCTCAGCTCATCAATCAGATTCCTGCAGATAATATCGTAGCTGATGGCAGTCTGTTTGA
ATTCGTGCATGGTGATGGTACTGAACCACCTTCCATGATGGGTGAATGGGACAATACAGAGCGGACTGAAAATAATGAAA
TGATCCGGATTTCAGCCGATCTGGTTGAGAAAATGATTGACCTTGCAGGTGAAAACTCCATCAACCGTTCCCGTATTGAA
ATGGATGTGGGACAGGTCGGCTCTATTCTTTCCGACATGGAATTGGCTATTCAACGACTGGCTGACCAGTTACGCCGTAT
GGAGGGTGAGCTTGAGAGTCAGATTATTGCCAAGCATGGTACTGAGAATTCACGTTACAGCGATTTTGATCCTTTAGAAA
TGGATCAGTATTCTTCGCTAAATCAGTTATCCAAATCACTGGCTGAGTCAGCATCTGACTTACTTGACTTTAAAACCACA
TTATCTGAAAAAATACGTGATACTGAAGGTTTGCTATTACAGCAGTCAAGGATTCAGGCAGAGATTCAGGAAAACCTGAT
GCGGACCCGTCTGGTACCCTTTTCTCGATTATTACCGCGTTTACAGCGCATAGCACGGCAGACCTCTTCAGCATTAAACC
GTCCTGCAGAACTCGTTGTTCAAAACACTGAAGGAGAGCTGGACCGCAATATTTTAGAGCGGCTGGTCACCCCGCTTGAA
CATATGCTGCGAAATGCAATTGATCATGGTATTGAAACCTCTGAGCAGCGTCTCAAGCAAGGTAAACCTGAAAGTGGCCG
TATTGAGCTAAATATTAATCGCCAAGGTACAGATGTCATCATTACTTTTACAGATGATGGCCAAGGTATTAATCTTGACA
AGCTGAAAAATAAAGCACTAGAGCGAGGCCTGATTGGAACGGAACAAAAACTGGAAGCTGAAGAACTGGCCCAGTTGATT
TTCCATCCAGGTTTAAGTACTGCAGCAGAAATTACCCAGATTTCTGGTCGTGGTGTAGGGCTGGATGTGGTACAGAGCAG
TATCAAGGCGATGGGTGGTCATGTGACGGTCGAGTCTGTACAGGGGCAGGGTACAACATTTACGATTCGTGTACCAACTA
CAGTAGCAATCAGTGATGCCCTGATGGTTAAAGCAGGTGACCAGCAATACGCTGTACCATTGGCGCAGATTGAACGTATT
GTGCGTATCTCTCCTTCTATGCTGGAAGACTATTTTGCTGGCAAAGAAGATACTTTCCGTATCGACAATATGTATTATAA
GCTACGTTATCTTTCAGAGTTTGTAGCAAATCAGTCTCTGCCTCGTCTTACCGGTATAGCCCACTCTCTGCCGGTACTGC
TGATTAAAGGGAGTAGTGGCCAGACAGTAGCGTTACTGGTTGACCAGTTGGTCGGATCTCGTGCACAAATTGTGGTAAAA
CCAGTGGGTCAACAGCTGGCCAGCGTAGGTGCAGTAGCTGGTGCAACAATTTTAGGTGATGGACAGGTTTGTCTCATTCT
GGATGGGCAGTATATTGCTCGTCAGGTTCAGTCTTCATTACGTGTCAAGGAAGTAAAAGAGTCTCGTGAGTTGCATCGCT
TTAATGATGAACGACGTCTGATTATGATCGTTGATGACTCAGTCACTGTACGCAAAGTCACCAGCCGATTGCTTGAGCGT
CAAGGTTATGATGTAGTGACCGCTAAAGATGGTGTTGAAGCGATTGAACAGCTGGAAAGTATTAAGCCTGATTTAATGCT
GCTCGATATTGAAATGCCGCGTATGGATGGTTTTGAAGTAACTAATCTGGTACGTCATCATGATGTACATCGTAATATGC
CAATTATTATGATTACTTCACGTACAGGTGAGAAACATCGTGAGCGCGCTTTTGCACTCGGAGCAACGCAATATATGGGC
AAACCTTTCCAGGAAGCAGACCTGTTGGCCAATATTGAAGCGTTACTTGAGGTTATGGTCTAA


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

61.61

100

0.634


Multiple sequence alignment