Detailed information    

insolico Bioinformatically predicted

Overview


Name   pilY1   Type   Machinery gene
Locus tag   LQQ45_RS19585 Genome accession   NZ_CP090607
Coordinates   3896642..3900496 (-) Length   1284 a.a.
NCBI ID   WP_000768943.1    Uniprot ID   A0A0J0ZLJ4
Organism   Acinetobacter baumannii strain MRSN 58     
Function   assembly of type IV pilus (predicted from homology)   
DNA binding and uptake

Genomic Context


Location: 3891642..3905496
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  LQQ45_RS19550 (LQQ45_19550) - 3892406..3893347 (+) 942 WP_085916958.1 triacylglycerol lipase -
  LQQ45_RS19555 (LQQ45_19555) rplS 3893399..3893767 (-) 369 WP_000014562.1 50S ribosomal protein L19 -
  LQQ45_RS19560 (LQQ45_19560) trmD 3893975..3894715 (-) 741 WP_000464595.1 tRNA (guanosine(37)-N1)-methyltransferase TrmD -
  LQQ45_RS19565 (LQQ45_19565) rimM 3894761..3895309 (-) 549 WP_000189236.1 ribosome maturation factor RimM -
  LQQ45_RS19570 (LQQ45_19570) rpsP 3895329..3895580 (-) 252 WP_000260334.1 30S ribosomal protein S16 -
  LQQ45_RS19575 (LQQ45_19575) pilE 3895727..3896152 (-) 426 WP_000788336.1 type IV pilin protein Machinery gene
  LQQ45_RS19580 (LQQ45_19580) pilY2 3896149..3896631 (-) 483 WP_001046489.1 type IV pilin protein Machinery gene
  LQQ45_RS19585 (LQQ45_19585) pilY1 3896642..3900496 (-) 3855 WP_000768943.1 VWA domain-containing protein Machinery gene
  LQQ45_RS19590 (LQQ45_19590) pilX 3900508..3901326 (-) 819 WP_000149374.1 PilX N-terminal domain-containing pilus assembly protein Machinery gene
  LQQ45_RS19595 (LQQ45_19595) pilW 3901323..3902324 (-) 1002 WP_000079197.1 PilW family protein Machinery gene
  LQQ45_RS19600 (LQQ45_19600) pilV 3902325..3902885 (-) 561 WP_002194578.1 type IV pilus modification protein PilV Machinery gene
  LQQ45_RS19605 (LQQ45_19605) fimU 3902879..3903352 (-) 474 WP_001214060.1 Tfp pilus assembly protein FimT/FimU Machinery gene
  LQQ45_RS19610 (LQQ45_19610) ispH 3903522..3904472 (-) 951 WP_000407064.1 4-hydroxy-3-methylbut-2-enyl diphosphate reductase -
  LQQ45_RS19615 (LQQ45_19615) gmk 3904595..3905224 (+) 630 WP_000015937.1 guanylate kinase -

Sequence


Protein


Download         Length: 1284 a.a.        Molecular weight: 138115.41 Da        Isoelectric Point: 7.3066

>NTDB_id=643931 LQQ45_RS19585 WP_000768943.1 3896642..3900496(-) (pilY1) [Acinetobacter baumannii strain MRSN 58]
MKLKLKNFKPNNLWYAVCSSSMIFTWLMTSSVVQASDLQIYASPTAGKKTIVMMLDTSGSMTNNSYGENRLAMLKNGMNA
FLASNNPVLNDTRVGLGNFSANGDSRSGQILVAAAPLGDASTLNTVGSQRYKLKQAVANLTAGGSTPSAHAYAEAAAYLM
GTTTYSETNYAIRKDSYIKRVRRSDNRTEYSYCTNYRDSQIDTANLWQPCRSNSYWSSWSTNNPGVDNATAYDTSSDWTY
YYTYYYTTFNYAVANADSGIPKSKSNDTASNPNIVVDRNATNSNAVYQSPLPAVANRQSCDGQGIYFLSDGEPNNTTNTR
SASVMSTALGSTFGADFNCSGGLSNTTADSGWACMGEFAKRLFDKTKNPAGVSIQTAFVGFGSDFSSLNSSDVKNACRLS
SRTQSDRKGDDACSPNQSTNAVAAPGYGNGGFFPTQSSQGVTDSVIAFINNLDKVPLEPLTTGAISVPYDALNPKNLQEY
GYLRAFEPNPANTYLTWRGNLKKYHVVLSGANAGAFEANSGGLVYNASGAFRTGTKDYWNSSTYTDGGKVFLGGSYANVP
LPIAGQPETRDAEGNITKYYYAVQSKIRNLFTDVSAVAADGSLTKISTSGTNLLKIPAAPPEETNPFDTVANTASYVLGK
FDPSTGQNILKAFPISLKLKILNYLGYSTDINATTLPSSLVTSNEPYLSMGGSIHSLPVQLTYNGTLDDNGNLTSAREQS
ILYGTMEGGLHIVDASSGIEQMVFVPADILNDSVASKALVVGQSDASAPAHGMDGAWVSDPAYNITTVGSGSSAVSKVTA
KQMNIYGGMRMGGSSYYGLDVLSPTSPKLLFRIGADQNDYSRMGQSWSKPVLANIRYNGSIRRVLIVGGGYDQCYEKPNI
TLTDACFTNGKAKGNAVYIIDAKTGQRLWWTSDTGSNTDNANMKHSIVSRISTLDRDADGLVDHLYFGDLGGQIFRVDLN
NNQTKTNSTYSSFGVRVVRLANLATNDSTYDGTNDYTGGNAPRFYEPPTVTIHDYGIHTFITVGIASGDRSTPLDVYPLT
GREGMTPASALSGRPVNNVYGIIDRDFVKKNLMSLTDNQLETKDITRTGLRKNPQILRTGETRVAQIFFPTTGVGKGGWY
RSLSSTSDGTEKANNSFRIKGGLKAFEEPMAITGNLIILVYDPQGTGIVAADPCLPRVVGETDRQTYCLPFGACLNSDGS
IDQNKENHSGFETQTGTNCPVGASECNKNVIGSGIRSVTFVPTEDNPPTTNSCGKLKLSGNEQGTGQWQCTSHLVPTRWY
ERYR

Nucleotide


Download         Length: 3855 bp        

>NTDB_id=643931 LQQ45_RS19585 WP_000768943.1 3896642..3900496(-) (pilY1) [Acinetobacter baumannii strain MRSN 58]
ATGAAACTAAAATTGAAGAATTTTAAGCCAAATAATTTATGGTATGCCGTCTGTTCAAGCTCAATGATATTCACATGGCT
GATGACAAGCTCTGTGGTGCAAGCAAGTGATTTACAAATTTATGCCTCACCTACAGCAGGTAAAAAAACAATTGTGATGA
TGTTGGATACATCAGGAAGTATGACCAACAATAGTTATGGTGAAAACCGCTTAGCCATGCTTAAAAATGGTATGAATGCT
TTTTTGGCTAGCAATAACCCTGTCTTAAATGATACGCGAGTAGGTTTAGGAAATTTCTCGGCAAATGGTGACAGCCGAAG
TGGACAAATTTTAGTGGCTGCTGCTCCTTTAGGTGATGCAAGTACTTTAAATACGGTAGGCTCACAACGTTATAAATTAA
AACAAGCTGTTGCTAATTTAACTGCGGGAGGCTCAACACCTTCAGCCCACGCTTATGCTGAAGCAGCTGCTTACTTAATG
GGGACAACCACATATTCAGAGACGAATTATGCTATTCGTAAAGATAGTTATATCAAACGTGTAAGAAGATCTGATAATAG
AACTGAATATTCATATTGTACTAATTACCGTGATTCGCAAATTGATACAGCCAACCTATGGCAACCTTGTCGTTCAAATA
GTTATTGGAGTAGCTGGTCAACAAATAATCCAGGTGTGGATAATGCTACTGCTTATGATACTTCATCTGACTGGACTTAT
TACTATACTTATTACTACACCACTTTTAATTATGCTGTAGCAAATGCAGATAGCGGTATTCCAAAATCTAAATCAAACGA
TACAGCTAGCAATCCGAATATTGTTGTAGACCGAAATGCTACTAACTCCAATGCAGTGTATCAGTCACCTTTACCTGCAG
TAGCGAATCGCCAGAGTTGTGATGGACAAGGTATTTACTTCTTATCGGATGGCGAACCGAACAATACAACAAATACACGT
TCGGCAAGTGTCATGTCGACTGCTTTAGGTAGTACTTTTGGAGCTGATTTTAATTGTTCTGGAGGTTTATCTAACACTAC
GGCAGACTCTGGTTGGGCTTGTATGGGAGAGTTTGCAAAAAGATTATTTGATAAAACAAAGAACCCTGCCGGAGTTTCTA
TTCAAACAGCATTTGTCGGTTTTGGTAGTGACTTTTCTAGTTTGAATTCTTCTGATGTAAAAAATGCCTGCCGTTTAAGT
TCGAGAACCCAGTCTGACCGAAAAGGAGATGATGCGTGTTCACCGAATCAATCTACAAATGCGGTAGCTGCACCAGGTTA
TGGAAATGGTGGTTTTTTCCCTACTCAGAGTTCACAAGGCGTAACAGACAGCGTTATCGCATTTATTAATAATTTAGATA
AAGTTCCTTTAGAACCCTTAACCACAGGTGCTATCTCAGTTCCATATGATGCATTGAATCCCAAAAATTTACAGGAATAT
GGTTATTTACGAGCTTTTGAGCCAAATCCAGCTAACACGTACTTAACATGGCGTGGAAATTTAAAGAAATATCATGTTGT
TTTATCTGGAGCGAATGCTGGTGCTTTTGAGGCCAATTCTGGCGGATTAGTCTACAATGCAAGTGGGGCTTTTAGAACTG
GAACAAAGGATTATTGGAATAGCTCTACTTATACTGACGGAGGCAAAGTCTTTTTAGGTGGTTCATATGCGAATGTGCCT
TTACCCATTGCTGGACAACCTGAAACACGTGATGCAGAAGGGAATATCACAAAATATTATTACGCAGTACAAAGTAAAAT
CCGCAACTTATTTACTGATGTTTCCGCCGTTGCAGCAGATGGTAGCTTAACGAAAATTTCAACTTCTGGAACTAATTTGC
TAAAAATTCCAGCTGCTCCACCAGAAGAAACTAATCCTTTTGATACGGTGGCTAATACAGCAAGTTATGTTTTAGGTAAA
TTTGATCCATCAACTGGACAAAATATTTTAAAAGCTTTTCCTATAAGCTTGAAATTAAAAATATTAAATTATTTAGGTTA
TTCAACAGATATTAATGCAACAACTCTGCCTTCATCTTTGGTTACATCGAATGAACCTTATTTATCGATGGGGGGAAGTA
TTCACTCTTTACCGGTTCAACTAACCTACAATGGAACCCTAGATGATAATGGGAATTTAACATCTGCCCGAGAACAATCC
ATCCTCTATGGAACTATGGAAGGCGGATTACATATTGTGGATGCTTCATCTGGTATTGAGCAAATGGTCTTTGTTCCTGC
AGATATTTTAAATGATTCAGTTGCTTCCAAAGCTTTAGTTGTTGGTCAAAGTGATGCTTCAGCTCCCGCTCATGGTATGG
ACGGAGCTTGGGTATCTGATCCAGCCTATAATATTACTACAGTGGGAAGTGGTAGCTCGGCAGTATCAAAAGTAACTGCA
AAGCAAATGAATATTTATGGCGGCATGCGTATGGGAGGAAGTAGCTACTACGGACTAGATGTATTAAGCCCTACTTCACC
GAAACTGCTTTTTAGAATAGGGGCAGACCAGAATGACTATAGCCGTATGGGTCAAAGCTGGTCTAAACCCGTACTCGCGA
ACATCCGTTATAACGGTTCTATTAGACGCGTCCTGATTGTTGGCGGTGGTTATGATCAGTGTTATGAAAAACCAAATATT
ACGTTGACTGACGCTTGCTTTACCAATGGAAAAGCAAAAGGAAATGCTGTCTATATTATTGACGCAAAAACTGGTCAGCG
TTTGTGGTGGACAAGTGATACAGGTTCTAATACTGATAACGCCAATATGAAGCATAGTATTGTTAGCCGTATTAGTACTT
TAGACCGTGATGCTGATGGCTTAGTCGACCATCTATATTTTGGAGATTTAGGCGGACAAATTTTTCGCGTAGACCTTAAT
AATAATCAGACAAAAACCAATTCGACCTATAGCAGTTTTGGTGTCAGAGTTGTGCGTTTAGCGAATTTAGCAACAAATGA
TTCAACTTATGATGGCACAAATGATTATACAGGTGGGAATGCTCCTCGTTTTTATGAGCCTCCAACAGTAACGATCCACG
ATTATGGAATTCACACTTTTATTACAGTAGGAATTGCATCAGGAGACCGTAGTACACCTTTAGATGTTTACCCACTCACA
GGTCGTGAAGGTATGACGCCTGCAAGTGCATTAAGTGGACGTCCTGTAAATAATGTATATGGAATTATTGATAGAGACTT
TGTTAAAAAGAACTTAATGTCTTTAACTGATAATCAGCTTGAAACAAAAGATATTACACGGACAGGCTTAAGAAAAAATC
CACAAATTCTAAGAACAGGTGAAACAAGAGTAGCTCAAATTTTCTTCCCAACTACAGGAGTAGGTAAAGGTGGTTGGTAT
CGCTCGCTTTCTAGTACGAGCGATGGTACAGAAAAAGCTAATAATAGTTTTCGTATTAAAGGAGGACTCAAAGCTTTTGA
GGAACCAATGGCAATTACGGGTAATTTAATTATTCTAGTTTATGACCCTCAAGGAACGGGAATTGTTGCGGCAGATCCTT
GCCTACCTCGTGTTGTGGGAGAAACAGACCGACAAACTTATTGTTTACCATTTGGAGCTTGTCTTAATTCTGATGGGTCA
ATCGATCAAAATAAAGAGAATCACAGTGGGTTTGAAACACAAACTGGTACTAATTGCCCAGTAGGGGCTTCTGAATGTAA
TAAAAACGTTATTGGCTCTGGTATTCGTAGCGTAACATTTGTACCAACGGAGGATAACCCACCTACGACTAATAGTTGTG
GGAAATTAAAGCTGTCTGGTAATGAGCAAGGGACTGGACAGTGGCAATGTACGAGTCATTTAGTTCCTACGCGTTGGTAT
GAGCGTTATCGTTAA


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

90

100

0.904