Detailed information    

insolico Bioinformatically predicted

Overview


Name   chpA   Type   Regulator
Locus tag   EPY81_RS00750 Genome accession   NZ_CP035109
Coordinates   155978..160483 (-) Length   1501 a.a.
NCBI ID   WP_068544804.1    Uniprot ID   -
Organism   Acinetobacter pittii strain NQ-003     
Function   regulation of type IV pilus assembly (predicted from homology)   
Competence regulation

Genomic Context


Location: 150978..165483
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  EPY81_RS00720 (EPY81_00730) elsL 151938..152441 (-) 504 WP_002116462.1 cell wall-recycling L,D-carboxypeptidase ElsL -
  EPY81_RS00725 (EPY81_00735) - 152593..152961 (-) 369 WP_002116111.1 YbaN family protein -
  EPY81_RS00730 (EPY81_00740) - 153065..153946 (+) 882 WP_005072800.1 DUF1853 family protein -
  EPY81_RS00735 (EPY81_00745) - 154070..154213 (+) 144 WP_014207555.1 entericidin A/B family lipoprotein -
  EPY81_RS00740 (EPY81_00750) dapE 154340..155476 (+) 1137 WP_005072799.1 succinyl-diaminopimelate desuccinylase -
  EPY81_RS00745 (EPY81_00755) - 155511..155978 (-) 468 WP_002116250.1 hypothetical protein -
  EPY81_RS00750 (EPY81_00760) chpA 155978..160483 (-) 4506 WP_068544804.1 hybrid sensor histidine kinase/response regulator Regulator
  EPY81_RS00755 (EPY81_00765) pilJ 160631..162709 (-) 2079 WP_005072794.1 methyl-accepting chemotaxis protein -
  EPY81_RS00760 (EPY81_00770) pilI 162752..163288 (-) 537 WP_002116439.1 chemotaxis protein CheW -
  EPY81_RS00765 (EPY81_00775) pilH 163349..163711 (-) 363 WP_002116220.1 response regulator -
  EPY81_RS00770 (EPY81_00780) pilG 163734..164117 (-) 384 WP_000389061.1 twitching motility response regulator PilG Regulator
  EPY81_RS00775 (EPY81_00785) - 164402..165040 (+) 639 WP_005072790.1 hypothetical protein -

Sequence


Protein


Download         Length: 1501 a.a.        Molecular weight: 171489.03 Da        Isoelectric Point: 4.4445

>NTDB_id=334530 EPY81_RS00750 WP_068544804.1 155978..160483(-) (chpA) [Acinetobacter pittii strain NQ-003]
MKEILKTLTEAMMLPEDSYSQQDDEFLEIFVEEIEEIFVELQSLIHEWMQSENVATLTEIRRHFHTLKGSGRMIGAKSSA
ELAWTVEDTLNRVINQSLGLTPDIQQYVQLVFKFYFFKLVDDFKSKKNHTLDFRPLILLGQQLQQQQSIEPALDELLLLS
DILTAETQTGLEANDLEPESTEVLTILTPEVAIETEQTLAETLILFMEEAEEHLATIDQFLEKEIHQHESYNALIRALHT
LRGSSAMAHVEPIFEASTKVEHLFKILLQEELSSHSEEVSLLRDYRQFIRNSLDLLAAHCSTEQLESDLQKFNQVWDAYM
EQHGEHSSPLMPPHGLVSQLLQLDVAELLDAELDFEKGIRTEFPHYLERLSEQADVLLQHTQSQAMIGLYEYTNQLKESY
DILLDRPDLLQSDYIFEIYQKAHQQLIQLFDALAAGQRVSIIEQHQNVLDELKLYTQYIPNLNSESLETHQDVFEPLFNA
EVEQTANEPLIENVFTDQVTIGQSVQLDRQFISSEHVNRHFDPDLLDIFLEEAGELLEGMDTDLNLWVNDQENFAALNNL
MRYLHTLKGGANMIQATYIGLIAHELESIYERLIQKQLIVSSALIDFIRLVQDDLADRLQIVREQHLDYAASHTIQALKN
AGQVFDSHIKESKTEPETYVIPELNFEVLQQEAINNTALNLSELTSASEQIAKSNNQLVEQTELQVLYADHDHTESIPDQ
DINTVVEQTFMEEAAELLEMADHLLKQWFEQRTNRSILLQLQRAVHSLKGGSRMLGLETVQAIAYQLENAFEQFALHHFS
SNIYDNLLESAIVWLKEAIFKQNYQHFDGLQQSLENIQFIERAIQIPSKLTRTDLFSTEPVMSFVQGDGTEPPPMMGEWE
QAQRLDQNNEMIRVSADLIEKMIDLSGENSINRSRIEMDLSQFGHTLAEMELAIQRLADQLRRMEGELETQIIAKHGIEN
SRYTEFDPLEMDQYSSLNQLSKSLAESASDLVDFKNTLSEKIRDTEGLLVQQSRIQAEIQEGLMRTRLVPFSRLLPRLQR
IVRQTSTTLNRPAELFVNNTEGELDRTMLERLVTPLEHMLRNAIDHGLEDRAQREQAKKPETGRIELNIHRQGTDVVVTF
KDDGQGIDIEKVRQKALMSGLINPEQVLEHQDILQLIFHPGLSTADQVTQISGRGVGLDVVQSDIKALGGHVSVDSVYGQ
GTVFTIRVPTTVAVSDALMVKVADQQFAIPLAQIDRIVRVSPASLEQYFGSEQELFEFENKRYPLRYLSEFVGNQPIPRL
SGMMYSLPVLMIKANNGQTVALLVDQLIGSRAQIVVKPIGQQFSSIGAIAGATILGDGQVCLILDGQNIARQIQSTRRHK
SLNETIYRQRESDERRLIMIVDDSVTVRKVTSRLLERQGYDVVTAKDGVDAIEQLENIKPDLMLLDIEMPRMDGFEVLNL
VRHHDLHQDIPVIMITSRTGEKHRERAFTLGVNQYMGKPFQEEDLLHNIDALFMTFEGRLA

Nucleotide


Download         Length: 4506 bp        

>NTDB_id=334530 EPY81_RS00750 WP_068544804.1 155978..160483(-) (chpA) [Acinetobacter pittii strain NQ-003]
ATGAAAGAAATATTAAAAACTTTAACTGAAGCAATGATGCTACCGGAAGATAGCTACTCTCAACAAGATGATGAATTTCT
TGAAATATTTGTCGAAGAAATTGAAGAAATTTTTGTTGAATTACAATCTTTGATTCACGAATGGATGCAATCTGAAAATG
TTGCTACGCTTACTGAAATCCGCCGTCATTTTCATACATTGAAAGGTTCAGGGCGAATGATTGGGGCCAAATCTTCTGCT
GAGCTTGCTTGGACTGTGGAAGATACGCTTAATCGGGTAATCAATCAGAGTCTCGGATTAACTCCTGACATCCAACAATA
TGTTCAGTTGGTATTTAAGTTCTATTTCTTTAAGTTAGTAGATGACTTCAAATCTAAAAAAAATCATACCCTAGACTTTA
GGCCCCTAATTTTATTGGGACAACAATTACAGCAACAGCAAAGTATAGAACCCGCGTTAGACGAACTTTTATTATTATCA
GATATTCTTACTGCTGAAACTCAAACTGGTTTAGAAGCGAATGACTTAGAACCAGAATCTACAGAAGTTTTAACTATTTT
GACTCCAGAAGTTGCTATAGAAACTGAACAGACTCTTGCTGAAACCTTAATTTTATTTATGGAAGAAGCAGAAGAGCACT
TAGCGACAATTGATCAGTTTTTGGAAAAAGAAATACATCAGCATGAAAGTTATAATGCTCTAATACGTGCGTTACATACA
TTACGTGGCAGCTCTGCCATGGCTCATGTAGAACCAATCTTTGAAGCTAGTACCAAAGTTGAGCATTTATTTAAAATACT
ATTACAAGAAGAGCTTTCTTCTCATTCAGAAGAAGTTTCATTACTCCGTGATTATCGTCAGTTTATTCGAAATAGTTTAG
ATCTATTGGCTGCACATTGCTCTACTGAGCAATTGGAATCTGATCTACAAAAATTTAATCAGGTTTGGGATGCTTACATG
GAGCAGCATGGTGAGCATTCGAGCCCACTCATGCCTCCACATGGTTTAGTGTCTCAGCTATTACAGCTAGATGTTGCTGA
ATTACTTGATGCGGAATTAGACTTTGAGAAGGGAATACGTACAGAGTTTCCTCATTATCTTGAACGTTTAAGTGAACAAG
CAGATGTTTTGCTGCAACATACTCAGTCGCAGGCAATGATTGGTTTATATGAATATACTAACCAGTTGAAAGAAAGCTAC
GACATATTGCTTGATCGACCTGATTTATTGCAATCAGATTATATTTTTGAAATTTATCAAAAAGCGCACCAACAATTAAT
TCAGTTATTTGATGCATTAGCTGCGGGACAAAGAGTAAGTATCATCGAGCAACACCAAAATGTCTTGGATGAGCTAAAAC
TATATACTCAATATATTCCAAATCTTAATTCCGAATCATTAGAAACTCATCAAGACGTTTTTGAACCATTGTTTAATGCT
GAAGTTGAACAAACGGCGAATGAACCTCTCATAGAAAATGTATTCACTGATCAGGTCACCATAGGACAGAGTGTACAACT
AGATCGACAGTTTATTTCGTCTGAGCATGTAAACCGTCATTTTGATCCAGATCTTTTAGATATTTTTCTTGAAGAAGCCG
GTGAGTTGCTTGAGGGAATGGATACAGATCTTAATCTTTGGGTTAATGATCAAGAAAACTTTGCCGCTCTCAATAATCTG
ATGCGTTATTTGCATACCTTAAAAGGTGGGGCAAATATGATTCAGGCAACTTATATTGGTTTAATTGCACATGAGTTAGA
AAGTATTTATGAGCGTTTAATTCAAAAACAGTTGATAGTTTCGTCTGCTCTCATTGATTTTATTCGACTAGTTCAAGATG
ACTTGGCTGACCGTCTTCAAATAGTGCGTGAACAGCACCTAGATTATGCTGCTTCTCATACTATTCAAGCACTTAAAAAT
GCAGGTCAGGTATTTGATTCTCATATTAAAGAGAGCAAAACAGAACCTGAAACGTATGTTATACCTGAATTAAATTTTGA
AGTATTACAACAAGAAGCGATAAATAATACGGCGTTAAACCTCAGTGAGTTAACTTCTGCTTCTGAGCAGATTGCTAAGT
CTAATAATCAACTTGTTGAGCAAACCGAATTACAAGTTCTTTATGCTGATCACGATCATACAGAGAGTATCCCAGATCAA
GATATTAATACTGTTGTCGAGCAGACATTCATGGAGGAAGCGGCCGAACTATTAGAAATGGCCGATCACTTATTAAAACA
ATGGTTCGAGCAACGTACTAACCGTAGTATCTTGCTTCAACTACAAAGAGCAGTGCACAGCTTGAAAGGCGGTTCCCGTA
TGCTGGGACTTGAAACCGTGCAAGCGATTGCTTATCAACTTGAGAATGCTTTTGAACAATTTGCGCTTCATCATTTCAGC
TCAAATATTTATGACAACTTATTAGAGAGTGCAATTGTCTGGTTAAAAGAGGCAATTTTTAAACAAAATTATCAACACTT
CGATGGTTTACAACAAAGTCTGGAAAATATCCAGTTCATTGAAAGAGCAATTCAAATTCCTAGTAAGTTAACTAGAACTG
ATCTATTCAGCACGGAACCTGTAATGAGTTTTGTGCAAGGTGACGGTACAGAACCACCGCCAATGATGGGTGAGTGGGAA
CAAGCACAACGCCTTGATCAAAATAATGAGATGATTCGAGTCTCGGCAGATTTAATTGAAAAAATGATTGATCTGTCTGG
TGAAAATTCGATTAACCGTTCGCGAATTGAAATGGATTTAAGCCAATTTGGTCATACCTTAGCGGAAATGGAATTGGCTA
TTCAGCGACTTGCAGATCAGTTGCGTCGAATGGAAGGTGAATTGGAAACCCAAATTATTGCAAAGCACGGTATTGAGAAC
TCACGTTATACGGAATTTGATCCTTTAGAGATGGACCAATATTCTTCATTAAATCAGTTATCAAAGTCTCTTGCCGAGTC
TGCATCGGATTTAGTAGATTTTAAAAATACATTATCTGAAAAGATCAGAGACACTGAAGGTTTATTGGTACAGCAATCGC
GTATTCAGGCTGAAATTCAAGAAGGTCTTATGCGAACACGCTTAGTACCATTTTCTCGATTATTGCCTCGTCTGCAAAGA
ATTGTGAGGCAGACTTCTACCACGTTAAATCGACCAGCGGAGCTTTTTGTTAATAATACAGAAGGCGAGCTGGACCGGAC
AATGTTAGAACGTTTGGTTACGCCACTTGAGCACATGCTTAGAAATGCAATTGACCATGGATTAGAAGACCGTGCGCAAC
GTGAACAAGCTAAAAAACCAGAAACTGGACGCATTGAACTCAATATTCATCGTCAAGGTACAGATGTTGTAGTTACATTT
AAGGATGATGGGCAAGGTATTGATATCGAGAAGGTTCGTCAAAAGGCGTTAATGTCTGGTTTGATTAATCCAGAGCAAGT
ATTAGAACATCAAGATATTTTACAGCTGATTTTCCATCCTGGTTTAAGTACAGCCGATCAAGTCACTCAGATTTCAGGCC
GTGGCGTCGGACTGGATGTCGTGCAAAGTGATATTAAGGCCTTAGGTGGCCATGTGAGTGTCGACTCTGTATACGGGCAG
GGAACTGTCTTTACCATACGTGTTCCAACGACAGTAGCTGTTAGTGATGCTTTAATGGTTAAAGTTGCTGATCAGCAATT
TGCAATCCCACTGGCGCAGATTGATCGAATTGTACGAGTTTCACCAGCATCATTAGAACAATATTTCGGAAGTGAACAAG
AGCTCTTTGAATTTGAAAATAAGCGCTATCCATTACGTTATTTATCTGAGTTTGTTGGTAATCAACCAATTCCGCGCTTA
AGTGGAATGATGTATTCATTACCAGTATTAATGATTAAGGCAAATAATGGACAAACCGTCGCCTTATTAGTTGACCAACT
GATTGGCTCACGCGCACAGATTGTAGTTAAGCCAATAGGACAACAATTCTCTAGCATTGGTGCGATTGCAGGAGCAACTA
TTTTAGGTGATGGTCAAGTTTGTCTAATTTTAGATGGACAAAATATTGCTCGCCAAATTCAATCTACTCGCCGACATAAA
TCGCTTAATGAAACTATCTATAGACAACGCGAGTCTGATGAGCGACGTCTTATCATGATTGTAGATGACTCGGTAACTGT
ACGTAAGGTGACGTCTCGCTTACTTGAACGTCAGGGCTATGATGTAGTCACAGCTAAAGATGGGGTTGATGCGATTGAGC
AATTGGAAAATATTAAACCAGATCTCATGTTACTTGATATTGAAATGCCACGAATGGATGGCTTTGAGGTACTTAATCTC
GTTCGACATCATGATCTACATCAAGATATACCAGTGATTATGATTACATCACGAACTGGTGAAAAACACCGTGAACGAGC
ATTTACTTTAGGTGTGAACCAATACATGGGTAAACCTTTCCAAGAAGAAGACTTACTTCACAATATTGATGCGTTATTCA
TGACATTTGAAGGGAGACTTGCCTAA


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

80.013

100

0.805


Multiple sequence alignment