Detailed information    

insolico Bioinformatically predicted

Overview


Name   chpA   Type   Regulator
Locus tag   P3S51_RS09270 Genome accession   NZ_CP121303
Coordinates   1883474..1888288 (-) Length   1604 a.a.
NCBI ID   WP_311917747.1    Uniprot ID   -
Organism   Acinetobacter sp. ANC 7201     
Function   regulation of type IV pilus assembly (predicted from homology)   
Competence regulation

Genomic Context


Location: 1878474..1893288
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  P3S51_RS09240 (P3S51_09240) elsL 1879562..1880068 (-) 507 WP_311917743.1 cell wall-recycling L,D-carboxypeptidase ElsL -
  P3S51_RS09245 (P3S51_09245) - 1880065..1880448 (-) 384 WP_311917744.1 YbaN family protein -
  P3S51_RS09250 (P3S51_09250) - 1880538..1881395 (+) 858 WP_311917745.1 DUF1853 family protein -
  P3S51_RS09255 (P3S51_09255) - 1881513..1881662 (+) 150 WP_154772843.1 entericidin A/B family lipoprotein -
  P3S51_RS09260 (P3S51_09260) dapE 1881782..1882915 (+) 1134 WP_311917746.1 succinyl-diaminopimelate desuccinylase -
  P3S51_RS09265 (P3S51_09265) - 1883008..1883469 (-) 462 WP_248103133.1 hypothetical protein -
  P3S51_RS09270 (P3S51_09270) chpA 1883474..1888288 (-) 4815 WP_311917747.1 Hpt domain-containing protein Regulator
  P3S51_RS09275 (P3S51_09275) - 1888444..1890513 (-) 2070 WP_311917748.1 methyl-accepting chemotaxis protein -
  P3S51_RS09280 (P3S51_09280) - 1890570..1891100 (-) 531 WP_154772847.1 chemotaxis protein CheW -
  P3S51_RS09285 (P3S51_09285) - 1891104..1891472 (-) 369 WP_154772848.1 PleD family two-component system response regulator -
  P3S51_RS09290 (P3S51_09290) pilG 1891500..1891883 (-) 384 WP_154772849.1 twitching motility response regulator PilG Regulator
  P3S51_RS09295 (P3S51_09295) - 1892230..1892799 (+) 570 WP_154772863.1 hypothetical protein -

Sequence


Protein


Download         Length: 1604 a.a.        Molecular weight: 180370.94 Da        Isoelectric Point: 4.1762

>NTDB_id=811748 P3S51_RS09270 WP_311917747.1 1883474..1888288(-) (chpA) [Acinetobacter sp. ANC 7201]
MKEILKNLVESTTLPEDSYLEQDEEILEIFVEEIEEIFEELEPLLESWLANSTDTEVLKTIRRHFHTLKGSGRMVGARSA
GEVAWAVEDLLNRILAGAIQPTTQIEQFVATVYKIYKFKLYPLFKNVQPTAIDLRPLVLIGQYLQQQLSLEPALEDVLQL
ANTFEDENSSTGLEIELQEAVVDGLNIENFEMVEPVSQEAAFEPIQDQDTIEAVDFLHEANEQVEKSVTTSESAIADIEQ
STLLAETIEIFVEEAEEHLSVIRSFLSSENVTEKEYNNLIRALHTLRGSSTMVDLDHIFDASTKLEHLFKTLVEEGLDVT
YQELSALLQYSEFIQNYLEQLKQSASRDNLQSIFDEFLENWNQFEFAGQHAEVSENTQGIVTKLMDLNIDRLLDAEFEFD
QLANDQQYLRQLSAQAQLLVEGTQVKAAESIHHLSKELKAAYDALLEKPQLLNSDYAYDVFNTVHQKLIYLFDSLASSQR
VTLSEDDLYALQNLSAFIQQDIESFATDFVEPQQKASLDLNVDAIGFADTDTSELTIEEPSLQIEESNTLEFETESTALE
TAESVEEKAQELSTLDTQSAPVQVTEQGSGFNLAQLSQRIASDRLAVDSELTNRDFDLDLLDIFLEEADELLGSIDQEVD
TWTKDHENRTSLTNLMRYLHTLKGGANMISAKNIGLITHNLESIYERLINNQFEASPALISVIRLVQDDVSDRIQAIRDD
AIDYPATETVNILQNIVAITQGQEVASTELIEAEVQPVIEIETLQDRTETAVSVEINEIENTISFQSNETLSFDLPEELA
PAENLQQERSNVDFTESVKTERNAEEQSLHEIAEESFLEEAEELLETTESLIQQWIDDRSNRSVLLQLQRAVHSLKGGAR
MIELEPVAVISYQLENTLEQFAFHQFNSNAYDNLLFTTVAWLKQAIFKRDYTNFDGLNASLTAIEYVDVTAQLPERIAQV
DLIDSTASFEFIQGDGTEPPAMLGEWDDVNQDDNSNEMIRISADLVEKMIDLSGENSINRSRIEMELGQFNGTLYEMEQA
IQRLADQLRRMEGELESQILAKHGSENSRYEDFDPLEMDQYSSLNQLSKSLAESTSDLVDFKNTLADKIRGAEGLLLQQS
RIQSEIQESLMRTRLVPFSRLLPRLQRIVRQTASSLNRPTELVVHNTEGELDRTTLERLVTPFEHMLRNAIDHGIENPED
RLAAKKPKVGVVELNISRQGTDVIVTFSDDGKGIDHNVIKAKALKQGLITEDQELDKQEILQFIFHSGFSTAKEVTQISG
RGVGLDIVQSGIKALGGHVTVDSTLGKGTSFSIRVPTTVAVSDALMVKAGDQQFALPLAQIERIVRIAPAALETYFNSKD
DYFKIDNESYKLRYISEFISNQPVPRLNNVGHSLPVILIKGSAGQTIGLLVDQLVGSRSQIVVKPIGQQFSKVGAIAGAT
IMGDGHVCLILDSQGIARQVQATKRQQVTTKQRDIQRNDARRLVMIVDDSVTVRKVTTRLLERQGYDVVTAKDGVDAVEQ
LENVKPDLMLLDIEMPRMDGFEVTSHVRHHDLHQDLPIIMITSRTGEKHRERAFSLGVNNYMGKPFQEAELLANIETLLA
AKQG

Nucleotide


Download         Length: 4815 bp        

>NTDB_id=811748 P3S51_RS09270 WP_311917747.1 1883474..1888288(-) (chpA) [Acinetobacter sp. ANC 7201]
ATGAAAGAAATATTAAAAAATTTAGTTGAATCTACAACGCTTCCTGAAGATAGTTATCTTGAGCAAGATGAAGAAATTCT
AGAAATTTTCGTCGAAGAAATAGAAGAAATCTTCGAAGAGTTAGAGCCGTTGCTTGAATCGTGGTTGGCAAATTCAACAG
ATACTGAAGTACTTAAAACAATACGTCGTCATTTCCACACTTTAAAAGGTTCTGGACGTATGGTTGGCGCGCGTTCTGCT
GGTGAAGTTGCATGGGCAGTTGAAGACCTTTTAAACCGTATTTTAGCAGGCGCAATTCAGCCAACAACTCAAATTGAGCA
ATTTGTTGCGACTGTTTATAAAATTTATAAATTTAAGCTTTATCCGTTATTCAAAAATGTTCAACCAACAGCTATCGATT
TAAGACCTTTAGTGTTGATTGGGCAGTACTTACAACAACAGCTAAGCTTAGAGCCTGCTTTAGAAGATGTATTGCAATTA
GCCAATACATTTGAAGATGAAAACTCATCTACAGGTCTTGAGATTGAGTTACAAGAAGCAGTTGTTGATGGTTTAAATAT
TGAAAACTTTGAAATGGTTGAGCCAGTTTCACAAGAAGCTGCGTTTGAACCTATTCAAGATCAAGACACAATTGAAGCAG
TTGATTTTCTACATGAAGCGAATGAGCAGGTTGAAAAATCTGTAACGACTTCAGAATCAGCAATTGCTGACATTGAGCAA
AGTACATTGCTTGCAGAAACAATTGAAATTTTTGTGGAAGAAGCAGAAGAACACCTTAGTGTTATTCGCTCTTTTTTAAG
CAGTGAAAATGTGACTGAAAAAGAGTACAACAATTTAATTCGTGCATTACATACTTTGCGCGGTAGCTCGACTATGGTCG
ATTTAGACCATATTTTTGATGCAAGTACCAAACTTGAACATTTGTTTAAAACACTGGTAGAAGAAGGCTTAGACGTTACT
TACCAAGAACTGTCTGCTTTGTTGCAATATTCAGAGTTTATTCAAAACTATCTTGAGCAATTAAAACAATCTGCATCACG
TGACAACTTGCAGTCAATTTTTGATGAGTTTCTAGAAAATTGGAATCAATTTGAGTTTGCTGGACAACATGCTGAAGTCA
GCGAAAACACGCAAGGTATTGTCACTAAGTTGATGGATTTGAATATCGATCGCTTGCTTGATGCGGAGTTTGAGTTTGAC
CAATTAGCAAATGATCAGCAGTACTTACGTCAATTAAGTGCTCAAGCACAACTTTTAGTAGAAGGTACGCAAGTTAAAGC
TGCTGAAAGTATTCATCACCTCAGTAAAGAGCTGAAAGCTGCTTACGATGCTTTGTTAGAAAAGCCACAGTTATTAAATT
CAGATTATGCTTATGATGTATTTAATACAGTTCATCAAAAATTAATTTATTTATTCGATAGTTTGGCATCAAGTCAGCGT
GTGACTTTAAGCGAAGATGACTTGTACGCACTTCAAAACTTATCTGCATTTATTCAACAAGATATTGAAAGCTTTGCAAC
GGATTTTGTTGAACCACAGCAAAAAGCTTCTCTTGATTTAAATGTTGATGCTATTGGTTTTGCTGATACAGATACTTCAG
AATTAACAATTGAAGAACCATCACTTCAAATTGAAGAATCAAATACGCTTGAATTTGAAACTGAAAGTACAGCTTTAGAA
ACTGCTGAATCTGTTGAAGAAAAAGCTCAGGAACTTAGCACTTTAGATACTCAGTCAGCACCTGTTCAAGTAACAGAACA
AGGCTCAGGTTTTAATTTAGCACAGTTGTCACAGCGTATTGCATCAGATCGATTGGCTGTTGATTCAGAGCTTACCAACC
GTGATTTCGATTTAGACTTACTTGATATTTTCCTTGAAGAAGCAGATGAGCTTTTAGGTTCTATCGATCAGGAAGTCGAT
ACATGGACGAAAGACCATGAAAATAGAACATCTTTAACCAATTTAATGCGTTATTTGCATACCTTAAAAGGTGGTGCAAA
TATGATTTCTGCAAAAAATATTGGTTTAATCACGCATAACTTAGAAAGTATTTATGAGCGATTAATCAATAATCAATTTG
AAGCTTCGCCCGCATTAATTAGCGTAATTCGTTTGGTTCAAGATGATGTTTCAGATCGTATTCAAGCAATTCGTGATGAT
GCTATCGATTATCCTGCAACTGAAACAGTGAATATTCTTCAGAACATTGTGGCAATTACACAAGGTCAAGAAGTCGCTAG
CACTGAATTGATTGAAGCAGAAGTTCAGCCTGTTATTGAAATTGAGACACTTCAAGATCGTACTGAAACAGCAGTTTCAG
TAGAAATAAATGAAATTGAAAACACAATATCATTCCAATCTAACGAAACACTTTCTTTTGATTTGCCTGAAGAATTAGCA
CCTGCTGAAAATCTTCAACAAGAACGTTCGAATGTTGATTTTACTGAGTCAGTAAAAACTGAAAGAAATGCTGAAGAACA
AAGTCTGCATGAAATTGCAGAAGAATCATTCCTTGAAGAAGCAGAAGAGCTTTTAGAAACAACTGAAAGTTTAATTCAGC
AATGGATTGATGACAGAAGTAATCGTAGCGTTTTACTTCAATTACAACGTGCCGTACATAGCTTAAAAGGCGGTGCACGT
ATGATTGAGTTAGAACCTGTTGCAGTTATTTCTTATCAGCTAGAAAACACGCTAGAGCAATTTGCATTCCATCAATTTAA
CTCGAATGCTTATGACAACTTGTTATTCACAACTGTCGCGTGGTTAAAACAAGCAATCTTTAAACGAGATTACACAAACT
TCGATGGTCTAAATGCAAGTTTAACGGCTATTGAATATGTGGATGTAACAGCACAATTACCAGAACGCATTGCACAAGTT
GATTTAATTGATAGCACAGCAAGCTTCGAATTTATTCAAGGTGATGGTACAGAACCACCTGCAATGCTGGGTGAGTGGGA
TGATGTTAATCAAGATGACAACAGTAATGAGATGATTCGTATCTCGGCAGATTTAGTCGAGAAGATGATTGATTTATCTG
GTGAAAACTCAATTAACCGTTCACGTATTGAAATGGAATTGGGACAATTCAACGGTACTTTGTATGAGATGGAACAGGCG
ATTCAGCGTTTAGCGGATCAGTTACGTCGAATGGAAGGTGAGCTTGAGTCGCAAATTCTTGCGAAGCATGGTAGTGAAAA
TTCACGCTATGAAGACTTTGACCCATTAGAGATGGACCAATATTCATCTTTAAACCAATTGTCTAAATCGCTTGCCGAAT
CTACTTCCGATTTGGTCGATTTTAAAAATACCTTAGCCGATAAAATTCGTGGTGCAGAAGGTCTGTTATTACAACAATCA
CGTATTCAATCTGAAATTCAAGAAAGTTTGATGCGTACACGTTTGGTACCTTTCTCACGCTTATTACCACGTTTACAACG
TATTGTGCGTCAAACAGCATCATCTTTAAACCGTCCAACGGAACTTGTTGTTCACAACACGGAAGGCGAATTAGACCGTA
CAACGCTTGAGCGTTTAGTGACGCCATTTGAACACATGCTTCGTAATGCAATTGACCATGGTATTGAAAATCCAGAAGAT
CGATTAGCTGCTAAAAAGCCAAAAGTTGGTGTTGTTGAATTAAATATTAGCCGCCAAGGTACAGATGTAATTGTAACTTT
TAGCGACGATGGTAAAGGTATCGACCATAACGTTATTAAAGCAAAAGCATTGAAACAGGGCTTAATTACTGAAGACCAAG
AGTTAGATAAACAAGAAATCTTACAGTTTATTTTCCATTCTGGTTTTAGTACGGCTAAAGAAGTCACGCAAATTTCAGGG
CGTGGTGTTGGTCTAGACATTGTACAAAGTGGAATTAAAGCACTTGGTGGTCATGTCACTGTAGATTCAACATTGGGTAA
AGGCACATCATTTAGTATTCGCGTACCTACAACGGTAGCGGTAAGTGATGCCTTAATGGTGAAAGCAGGCGATCAACAAT
TTGCATTACCACTTGCACAAATTGAACGTATTGTTCGAATTGCACCTGCTGCACTTGAGACTTACTTCAATAGTAAAGAT
GATTATTTCAAAATTGACAATGAGAGCTATAAATTACGTTATATCTCAGAGTTTATTAGTAATCAGCCTGTACCACGTTT
AAATAATGTTGGACATTCATTACCTGTTATTTTAATTAAAGGTAGTGCGGGGCAAACGATTGGATTATTGGTCGATCAAC
TTGTAGGTTCACGTAGCCAAATTGTAGTGAAACCAATTGGACAACAGTTCTCTAAAGTAGGTGCAATTGCTGGCGCAACG
ATTATGGGTGATGGTCATGTTTGTCTAATTCTAGATAGCCAAGGCATTGCTCGTCAGGTACAAGCAACGAAGCGTCAGCA
AGTAACTACTAAACAACGTGATATTCAACGTAATGATGCACGTCGCTTAGTAATGATTGTCGATGACTCAGTAACAGTTC
GTAAGGTAACAACACGTTTGTTAGAGCGCCAAGGTTACGATGTTGTAACAGCAAAAGATGGTGTAGATGCGGTTGAGCAA
CTTGAAAATGTGAAACCAGATTTAATGTTACTTGATATTGAGATGCCACGTATGGATGGTTTTGAGGTAACAAGTCATGT
ACGACATCATGATCTTCACCAAGACTTGCCTATTATTATGATTACATCTCGTACAGGTGAAAAACACCGTGAGCGTGCAT
TCAGTTTAGGCGTGAATAACTACATGGGTAAACCGTTCCAAGAAGCAGAGCTACTTGCGAATATTGAAACTTTATTGGCA
GCAAAACAGGGGTGA


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

54.268

100

0.543