Detailed information    

insolico Bioinformatically predicted

Overview


Name   pilY1   Type   Machinery gene
Locus tag   FXO17_RS01805 Genome accession   NZ_CP043052
Coordinates   384520..388374 (+) Length   1284 a.a.
NCBI ID   WP_002116849.1    Uniprot ID   A0A8I1HEG1
Organism   Acinetobacter pittii strain AP43     
Function   assembly of type IV pilus (predicted from homology)   
DNA binding and uptake

Genomic Context


Location: 379520..393374
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  FXO17_RS01775 (FXO17_01775) gmk 379802..380431 (-) 630 WP_002116973.1 guanylate kinase -
  FXO17_RS01780 (FXO17_01780) ispH 380554..381504 (+) 951 WP_002116992.1 4-hydroxy-3-methylbut-2-enyl diphosphate reductase -
  FXO17_RS01785 (FXO17_01785) fimU 381674..382147 (+) 474 WP_068525289.1 pilus assembly FimT family protein Machinery gene
  FXO17_RS01790 (FXO17_01790) pilV 382141..382701 (+) 561 WP_080564113.1 type IV pilus modification protein PilV Machinery gene
  FXO17_RS01795 (FXO17_01795) pilW 382701..383702 (+) 1002 WP_002116811.1 PilW family protein Machinery gene
  FXO17_RS01800 (FXO17_01800) pilX 383699..384508 (+) 810 WP_002117088.1 PilX N-terminal domain-containing pilus assembly protein Machinery gene
  FXO17_RS01805 (FXO17_01805) pilY1 384520..388374 (+) 3855 WP_002116849.1 PilC/PilY family type IV pilus protein Machinery gene
  FXO17_RS01810 (FXO17_01810) pilY2 388385..388867 (+) 483 WP_002116770.1 type IV pilin protein Machinery gene
  FXO17_RS01815 (FXO17_01815) pilE 388864..389289 (+) 426 WP_002117055.1 type IV pilin protein Machinery gene
  FXO17_RS01820 (FXO17_01820) rpsP 389437..389688 (+) 252 WP_000260334.1 30S ribosomal protein S16 -
  FXO17_RS01825 (FXO17_01825) rimM 389708..390256 (+) 549 WP_002116736.1 ribosome maturation factor RimM -
  FXO17_RS01830 (FXO17_01830) trmD 390299..391054 (+) 756 WP_002116964.1 tRNA (guanosine(37)-N1)-methyltransferase TrmD -
  FXO17_RS01835 (FXO17_01835) rplS 391274..391642 (+) 369 WP_002116654.1 50S ribosomal protein L19 -
  FXO17_RS01840 (FXO17_01840) lip 391693..392634 (-) 942 WP_002116859.1 lipase family alpha/beta hydrolase -

Sequence


Protein


Download         Length: 1284 a.a.        Molecular weight: 137703.23 Da        Isoelectric Point: 7.5995

>NTDB_id=380366 FXO17_RS01805 WP_002116849.1 384520..388374(+) (pilY1) [Acinetobacter pittii strain AP43]
MKLKLKNFKPNNLWYAICSSSVAFTWLMTSSVVQASDLQIYASPTAGKKTIVMMLDTSGSMTNNSYGENRLAMLKNGMNA
FLASNNPVLNDTRVGLGNFSANGDSRSGQVLVAAAPLGDASTLNTVGSQRYKLKQAVANLTAGGSTPSAHAYAEAAAYLM
GTTTYSEANYAIRKDSYIKRVRKSDNRTEYSYCTNYRDSQIDTTNLWQPCRSNNYWSNWSTSNPGVDAATAYDTSSDWTY
SYTYYYTTFNYAVANADSGIPKSKSNDTTSNPNIVVDRNASNLNAIYQSPLPAVTNRQSCDGQGIYFLSDGEPNNTTNTR
SATVMSTALGSTLGANFTCSGGLSNTTADSGWACMGEFAKRLFDKTKNPAGVSIQTAFVGFGSDFSSLSSSDVKNACRLS
SRTQSDRKGDDACSPNQTTNAVAAPGYGNGGFFPTQSAQGVTDSVIAFINNLEKVPLQPLTTGAISVPYDALNPKNLQEY
GYLRALEPNPANTYLTWRGNLKKYHVVLSGGNAGAFEANTGGLVYNASGAFRTGTKDYWNSSNYNDGGNVFLGGSYAKVP
LPIAGQNETRDEDGNIIKYYYAVQTKIRNLFTDVSAVAADGSLTKISTSGTNLLKIPAAPPEGTNPFDSVANTASYVLGK
FNASTGQDILKAFPIGLKLKILNYLGYSTDISATTLPSSLVTSNEPYLSMGGSIHSLPVQLTYNGTLDENGNLTSAREQS
ILYGTMEGGLHLVDASTGVEQMAFVPADILNDPIASKALVVGQSDASAPAHGMDGAWVSDPAYSITTTGSGSSAVSKVTA
KQMNIYGGMRMGGSSYYGLNVLNPVSPKLLFRVGADQTDYSRMGQSWSKPVLANIRYNGVIKRVMIVGGGYDQCYENPNI
TLSNSCFTNGKAKGNAVYIIDAKTGERLWWTSDTGSNIDNSNMKHSIVSRISTLDRDADGLVDHLYFGDLGGQIFRIDLN
NNQTKTNSTYSSFGIRVVRLANLATNDSTYDASNDYTAGNAPRFYEPPTVTIHDYGIRTFITVGIASGDRSTPLDVYPLT
GREGMSPSTALSGRPVNNVYGIIDKDFIKKNLMSLADNQLETKDITRLTLRKNPQILRSGETRVAQIFFPNTGVGQSGWY
RSLSSMSDGTEKANNSFRIKGGLKAFEEPMAVTGTLIVPVYDPQGTGIVAADPCLPRVVGETDQQTFCLPFGACLNSDGS
IDQNKENGSGFKTQTGTNCPVGASECNKNVIGSGIRGVTFVPTEDNPPATNSCGKLKLSGNESGTGEWQCTSHLVPARWY
ERYR

Nucleotide


Download         Length: 3855 bp        

>NTDB_id=380366 FXO17_RS01805 WP_002116849.1 384520..388374(+) (pilY1) [Acinetobacter pittii strain AP43]
GTGAAACTAAAATTGAAGAATTTTAAGCCAAATAATTTATGGTATGCCATCTGTTCGAGTTCAGTTGCTTTTACATGGCT
AATGACAAGCTCCGTTGTGCAGGCCAGTGATTTACAAATTTATGCTTCACCTACAGCTGGTAAAAAAACCATTGTGATGA
TGTTGGATACATCAGGAAGTATGACCAACAATAGTTATGGCGAAAACCGTCTGGCTATGCTTAAAAATGGTATGAATGCT
TTTTTAGCAAGTAATAATCCTGTTTTAAATGACACTCGTGTGGGGTTGGGAAATTTCTCTGCAAATGGTGATAGCCGAAG
TGGGCAGGTTCTAGTGGCTGCTGCTCCTTTAGGAGATGCGAGTACTTTAAATACAGTGGGTTCTCAACGTTATAAATTAA
AACAGGCTGTTGCAAATTTAACTGCTGGCGGGTCAACGCCTTCAGCACATGCTTATGCGGAAGCTGCTGCTTATTTGATG
GGCACAACGACCTATTCAGAGGCAAATTATGCCATTCGAAAAGATAGCTATATAAAGCGTGTGCGAAAATCTGATAATAG
AACGGAATACTCTTATTGTACGAATTATCGCGATTCACAAATCGATACTACAAATCTATGGCAACCTTGTCGCTCTAATA
ACTATTGGAGTAACTGGTCAACTTCTAATCCGGGTGTGGATGCGGCAACTGCTTATGATACTTCGTCGGATTGGACCTAT
TCTTATACTTATTACTACACCACCTTTAATTATGCTGTAGCAAATGCAGATAGTGGTATCCCAAAATCAAAATCAAACGA
TACAACCAGCAATCCCAATATTGTTGTAGATAGAAATGCCTCTAATTTAAATGCTATTTACCAATCTCCTTTACCTGCGG
TGACCAATCGCCAGAGTTGTGATGGGCAAGGAATCTACTTTTTATCAGATGGGGAGCCGAACAATACAACAAATACGCGT
TCTGCAACTGTCATGTCGACAGCCCTAGGCAGCACTTTGGGAGCAAATTTTACTTGTTCTGGAGGTTTGTCTAACACTAC
AGCAGACTCTGGTTGGGCCTGTATGGGGGAATTTGCAAAAAGATTATTTGATAAAACAAAAAACCCAGCTGGGGTTTCTA
TTCAAACAGCATTTGTCGGTTTTGGTAGTGACTTTTCTAGTTTAAGTTCTTCTGATGTAAAAAATGCCTGTCGTTTAAGT
TCGAGAACCCAATCTGACCGAAAAGGAGATGATGCGTGTTCACCGAATCAGACCACAAATGCGGTCGCTGCACCTGGTTA
TGGGAATGGAGGTTTTTTCCCTACCCAAAGTGCGCAAGGTGTAACAGACAGTGTTATCGCATTTATTAATAACTTAGAAA
AAGTTCCGTTACAACCCTTAACCACTGGCGCTATCTCAGTTCCTTATGATGCACTAAACCCTAAAAATTTACAGGAATAT
GGTTACTTACGGGCTTTAGAGCCAAACCCAGCTAACACCTACTTAACATGGCGTGGAAATTTAAAGAAATATCATGTTGT
TTTATCAGGGGGCAATGCAGGTGCTTTTGAAGCTAACACTGGTGGGTTGGTTTATAATGCAAGTGGGGCTTTTAGAACGG
GTACGAAAGATTATTGGAATAGCTCTAATTATAATGATGGAGGTAACGTCTTTTTAGGTGGTTCATATGCAAAAGTTCCT
TTACCAATTGCTGGACAAAATGAAACACGTGATGAAGATGGAAATATCATAAAATATTATTACGCAGTACAAACTAAAAT
CCGCAACTTATTTACTGATGTTTCCGCTGTTGCGGCAGATGGTAGCTTAACGAAAATATCGACTTCTGGAACTAATTTGC
TAAAAATCCCAGCTGCTCCCCCAGAAGGAACTAATCCTTTTGATAGTGTGGCTAATACAGCAAGTTATGTTTTAGGAAAA
TTTAATGCATCAACTGGACAAGATATTTTAAAAGCTTTCCCGATTGGCTTGAAATTAAAAATATTAAATTATCTAGGTTA
CTCAACTGATATTAGCGCTACGACTTTACCTTCGTCATTAGTTACATCGAATGAACCCTATTTATCGATGGGCGGTAGTA
TTCATTCTTTACCGGTGCAGCTTACCTATAATGGAACATTAGATGAAAATGGGAATTTAACATCTGCGCGTGAACAATCT
ATTCTCTATGGAACGATGGAAGGTGGTCTGCATCTTGTGGATGCTTCAACTGGCGTAGAACAAATGGCTTTCGTTCCGGC
TGATATATTAAATGATCCAATTGCATCAAAAGCTTTAGTGGTTGGCCAAAGTGATGCCTCAGCTCCTGCTCACGGTATGG
ATGGGGCTTGGGTATCTGACCCTGCATATAGTATTACTACAACGGGAAGCGGTAGCTCAGCAGTATCAAAAGTAACTGCA
AAGCAAATGAATATTTATGGTGGCATGCGAATGGGTGGCAGCAGCTATTATGGCTTAAATGTCTTAAATCCTGTCTCACC
TAAGCTCCTGTTTAGAGTAGGAGCAGATCAAACTGATTATAGTCGCATGGGGCAGAGTTGGTCTAAACCTGTACTTGCAA
ATATACGTTATAACGGAGTTATTAAACGGGTTATGATTGTTGGTGGTGGCTACGACCAATGTTATGAAAACCCGAATATT
ACCTTGAGTAATTCTTGCTTTACGAATGGAAAAGCAAAAGGGAATGCTGTTTATATTATTGATGCTAAAACTGGGGAACG
CTTATGGTGGACTAGTGATACAGGCTCTAATATAGATAACTCTAATATGAAGCACAGTATTGTTAGTCGCATTAGTACCT
TAGATCGAGATGCTGATGGTTTGGTAGACCATTTATATTTTGGCGATTTAGGCGGGCAAATTTTCCGTATCGATCTTAAT
AATAACCAGACAAAAACAAATTCAACTTATAGCAGTTTCGGTATTCGAGTTGTTCGATTAGCGAATTTAGCAACAAATGA
CTCAACTTATGATGCTTCGAATGACTATACCGCTGGGAATGCGCCGCGTTTTTATGAACCGCCAACAGTGACAATTCATG
ATTATGGAATCCGCACTTTTATTACTGTCGGTATTGCTTCAGGTGACCGTAGTACACCTTTAGATGTTTATCCGCTTACA
GGTCGTGAGGGGATGTCACCGAGCACCGCATTAAGCGGAAGACCTGTAAACAATGTCTATGGGATTATCGATAAAGACTT
TATCAAAAAGAATTTAATGTCTTTAGCTGATAACCAACTTGAAACAAAAGATATTACTCGATTGACGCTTCGAAAAAATC
CACAAATTTTACGGTCTGGGGAAACACGAGTAGCACAGATTTTCTTTCCAAACACTGGGGTGGGGCAAAGTGGTTGGTAT
CGCTCACTTTCTAGTATGAGCGATGGCACAGAGAAAGCTAATAATAGTTTCCGTATTAAAGGTGGACTGAAAGCTTTTGA
AGAACCTATGGCCGTTACGGGGACTTTAATTGTGCCTGTTTATGATCCGCAGGGAACAGGCATTGTAGCGGCAGACCCAT
GTTTACCACGTGTAGTAGGTGAAACTGACCAGCAGACGTTCTGTTTACCATTTGGCGCCTGCCTTAATTCTGATGGGTCA
ATTGATCAAAATAAAGAGAATGGAAGTGGATTCAAAACACAAACTGGTACTAATTGCCCAGTAGGAGCTTCCGAATGTAA
TAAAAACGTTATTGGCTCCGGTATTCGTGGCGTAACATTTGTACCAACGGAGGATAACCCACCTGCGACTAATAGTTGTG
GGAAATTAAAGCTGTCTGGAAACGAGAGTGGAACGGGCGAGTGGCAATGTACAAGTCACTTAGTTCCTGCGCGCTGGTAT
GAGCGTTATCGCTAA


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
  pilY1 Acinetobacter baumannii D1279779

84.884

100

0.853


Multiple sequence alignment