Detailed information    

insolico Bioinformatically predicted

Overview


Name   pilF   Type   Machinery gene
Locus tag   LDO09_RS00090 Genome accession   NZ_AP024926
Coordinates   18837..21503 (-) Length   888 a.a.
NCBI ID   WP_223968753.1    Uniprot ID   A0AAD1KSD1
Organism   Thermus thermophilus strain AA1-1     
Function   power the assembly of type IV pilus (predicted from homology)   
DNA binding and uptake

Genomic Context


Location: 13837..26503
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  LDO09_RS00070 (TthAA11_00120) - 14683..15315 (-) 633 WP_143584081.1 histidine phosphatase family protein -
  LDO09_RS00075 (TthAA11_00130) purM 15312..16313 (-) 1002 WP_143584083.1 phosphoribosylformylglycinamidine cyclo-ligase -
  LDO09_RS00080 (TthAA11_00140) gatB 16319..17728 (-) 1410 WP_143584085.1 Asp-tRNA(Asn)/Glu-tRNA(Gln) amidotransferase subunit GatB -
  LDO09_RS00085 (TthAA11_00150) pilT 17739..18824 (-) 1086 WP_143584087.1 type IV pilus twitching motility protein PilT Machinery gene
  LDO09_RS00090 (TthAA11_00160) pilF 18837..21503 (-) 2667 WP_223968753.1 type IV pilus assembly ATPase PilB Machinery gene
  LDO09_RS00095 (TthAA11_00170) - 21500..21985 (-) 486 WP_014628818.1 YqeG family HAD IIIA-type phosphatase -
  LDO09_RS00100 (TthAA11_00180) pgeF 22020..22748 (-) 729 WP_014628819.1 peptidoglycan editing factor PgeF -
  LDO09_RS00105 (TthAA11_00190) surE 22745..23500 (-) 756 WP_014628820.1 5'/3'-nucleotidase SurE -
  LDO09_RS00110 (TthAA11_00200) - 23559..23765 (-) 207 WP_143584091.1 cold-shock protein -
  LDO09_RS00115 (TthAA11_00210) - 23865..24554 (-) 690 WP_143584079.1 IS5-like element ISTth7 family transposase -
  LDO09_RS00120 (TthAA11_00230) - 24958..26247 (+) 1290 WP_143584093.1 ABC transporter substrate-binding protein -

Sequence


Protein


Download         Length: 888 a.a.        Molecular weight: 97972.02 Da        Isoelectric Point: 5.3309

>NTDB_id=89467 LDO09_RS00090 WP_223968753.1 18837..21503(-) (pilF) [Thermus thermophilus strain AA1-1]
MSVLTIGDKRLGAALLDAGLLTDEELQRALERHREVGGSLAEVLVDMGLLSERRIAQTIEDRFGIPLVELHRVEIPPKVK
ALLPAEKAKELKAIPFALDEEAGVVRVAFLNPLDTLSLEEVEDLTGLVVEPYQTTKSAFLYALAKHYPELGLPVPPPPSG
EGQKDLMLGEFLLKKGLISREALEEALVEQEKTGDLLGRILVRKGLPEEALYRALAEQKGLEFLESTEGIVPDPSAAALL
LRSDALRYGAVPIGFQNGEVEVVLSDPRHKEAVAQLLNRPARFYLALPQAWEELFRRAYPQKNRLGEVLVQEGKLSREAL
KEALEVQKGLPRAKPLGEILVELGLARPEDVEEALQKQRQGGGRLEDTLVQSGKLRPEALAQAVATQLGYPYVDPEEDPP
DPGASLLLPEDLCRRYGVFPHRLEGNRLVLLMKDPRNILALDDVRLALKRKGLNHEVAPAVATEAAITKLIERFYGKAEL
SEIAKEFAKKQEEEAPSPLELDESAAQKFVKQVIREAFLQDASDIHIEPRQNDVQVRLRIDGALRPYSTLPKGALNAVIS
VVKIMGGLNIAEKRLPQDGRVRYREGAIDVDLRLSTLPTVYGEKAVMRLLKKASDIPEIEDLGFAPGVFERFKEVISKPY
GIFLITGPTGSGKSFTTFSILKRIATPDKNTQTIEDPVEYEIPGINQTQVNPQAGLTFARALRAFLRQDPDIIMVGEIRD
SETAKIATEAALTGHLVIATLHTNDAAQAITRLDEMGVEPFNISAALIGVLSQRLVRRVCEHCKVEVKPDPETLRRLGLS
EAEIQGARLYKGMGCERCGGTGYKGRYAIHELLVVDDEIRHAIVAGKSATEIKEIARRKGMKTLREDGLYKALQGITTLE
EVLARTIE

Nucleotide


Download         Length: 2667 bp        

>NTDB_id=89467 LDO09_RS00090 WP_223968753.1 18837..21503(-) (pilF) [Thermus thermophilus strain AA1-1]
ATGAGCGTGCTCACCATAGGGGACAAAAGGCTCGGGGCGGCCCTCTTGGACGCCGGGCTCCTCACGGACGAGGAGCTGCA
GCGGGCCTTGGAACGGCACCGGGAGGTGGGGGGCTCCTTGGCCGAGGTCCTGGTGGACATGGGCCTCCTCTCCGAGAGGA
GGATCGCCCAGACCATTGAGGACCGCTTCGGCATCCCCCTGGTGGAGCTCCACCGGGTGGAGATCCCCCCCAAGGTCAAG
GCCCTCCTTCCCGCGGAGAAGGCCAAGGAACTCAAGGCCATCCCCTTCGCCCTGGACGAGGAGGCGGGGGTGGTGCGGGT
GGCCTTCCTCAACCCCCTGGACACCCTGAGCCTGGAGGAGGTGGAGGACCTCACGGGGCTTGTGGTGGAGCCGTACCAGA
CCACCAAAAGCGCCTTCCTGTACGCCCTGGCCAAACACTACCCGGAGCTCGGCCTTCCCGTCCCCCCGCCGCCTTCGGGC
GAGGGCCAAAAGGACCTCATGCTCGGGGAGTTCCTCCTGAAAAAGGGGCTGATCTCCCGCGAGGCCCTGGAGGAGGCCTT
GGTGGAACAGGAGAAGACGGGGGACCTCCTCGGGCGGATCCTGGTGCGGAAGGGGCTCCCCGAGGAGGCCCTTTACCGGG
CTTTGGCGGAGCAGAAGGGGCTGGAGTTTCTGGAAAGCACCGAGGGGATCGTCCCCGACCCCTCCGCCGCCGCCCTCCTC
CTCCGCTCCGACGCCCTGCGTTACGGCGCCGTGCCCATCGGCTTCCAAAACGGGGAGGTGGAGGTGGTCCTCTCCGACCC
CCGGCACAAGGAGGCGGTGGCCCAGCTCCTCAATCGGCCCGCCCGCTTCTACCTCGCCCTCCCCCAGGCCTGGGAGGAGC
TCTTCCGCCGGGCCTACCCGCAGAAGAACCGCCTGGGGGAGGTCCTGGTCCAGGAGGGCAAGCTCTCCCGGGAGGCGCTA
AAGGAAGCCCTGGAGGTGCAGAAAGGCCTGCCCCGGGCCAAGCCTTTGGGGGAGATCCTGGTGGAGCTCGGCCTCGCCCG
CCCCGAGGACGTGGAGGAGGCCCTGCAGAAGCAAAGGCAGGGCGGGGGCCGGCTGGAGGACACCCTGGTCCAGTCGGGGA
AGCTCAGGCCCGAGGCCCTGGCCCAGGCGGTGGCCACCCAGCTGGGCTACCCCTACGTTGACCCCGAGGAGGACCCCCCC
GATCCCGGCGCCTCCCTCCTCCTCCCGGAGGACCTGTGCCGCCGCTATGGGGTCTTCCCCCACCGCCTCGAGGGAAACCG
CCTCGTCCTCCTGATGAAGGACCCGAGGAACATCCTGGCCCTGGACGACGTGCGCCTCGCCCTCAAGAGGAAGGGCCTGA
ACCACGAGGTGGCCCCCGCTGTGGCCACGGAGGCCGCCATCACCAAGCTCATCGAGCGCTTCTACGGCAAGGCCGAGCTC
TCGGAGATCGCCAAGGAGTTCGCCAAAAAGCAGGAGGAGGAGGCCCCAAGCCCCCTGGAGCTGGACGAGAGCGCCGCCCA
GAAGTTCGTGAAGCAGGTGATCCGGGAGGCCTTCCTCCAGGACGCCTCCGACATCCACATCGAGCCCAGGCAGAACGACG
TCCAGGTGCGCCTCCGGATTGACGGCGCCCTGCGGCCGTACAGCACCCTGCCCAAGGGGGCGCTGAACGCGGTGATCTCC
GTGGTCAAGATCATGGGCGGGCTCAACATCGCCGAGAAACGCCTCCCCCAGGACGGACGGGTGCGCTACCGGGAAGGGGC
CATCGACGTGGACCTCCGGCTTTCCACCCTGCCCACGGTCTACGGGGAGAAGGCGGTGATGCGCCTCCTCAAGAAGGCCT
CGGACATCCCCGAGATCGAGGACCTGGGCTTCGCCCCGGGGGTGTTTGAACGCTTCAAGGAGGTGATCTCCAAGCCCTAC
GGCATCTTCCTCATCACCGGGCCCACAGGGTCGGGCAAGAGCTTCACCACCTTCTCCATCCTCAAGCGCATCGCCACCCC
CGACAAGAACACCCAGACCATTGAGGACCCCGTGGAGTACGAGATCCCCGGGATCAACCAGACCCAGGTGAACCCGCAGG
CGGGCCTCACCTTCGCCCGGGCGCTAAGGGCCTTCCTCAGGCAGGACCCGGACATCATCATGGTGGGGGAGATCCGGGAC
TCCGAGACGGCCAAGATCGCCACCGAGGCCGCCCTCACCGGCCACCTCGTCATCGCCACCCTGCACACCAACGACGCCGC
CCAGGCCATCACCCGCCTGGACGAGATGGGGGTGGAACCCTTCAACATCTCCGCTGCCCTCATCGGCGTCCTCTCCCAGC
GCCTGGTGCGCAGGGTGTGCGAGCACTGCAAGGTGGAGGTCAAGCCGGACCCCGAGACCCTCAGGCGCCTCGGGCTTTCC
GAGGCGGAGATCCAAGGGGCCAGGCTCTACAAGGGCATGGGGTGCGAGCGGTGCGGCGGCACCGGGTACAAGGGCCGCTA
CGCCATCCACGAGCTTTTGGTGGTGGACGACGAGATCCGCCACGCCATCGTGGCGGGGAAGTCGGCCACGGAGATCAAGG
AGATCGCCCGGAGGAAGGGGATGAAGACCCTGAGGGAGGACGGCCTCTACAAGGCCCTCCAAGGGATCACCACCCTCGAG
GAGGTCCTGGCGCGTACCATTGAGTAA


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
  pilF Thermus thermophilus HB27

98.875

100

0.99

  pilB Deinococcus radiodurans R1 = ATCC 13939 = DSM 20539

55.955

100

0.561


Multiple sequence alignment