Detailed information    

insolico Bioinformatically predicted

Overview


Name   recJ   Type   Machinery gene
Locus tag   VXF94_RS18055 Genome accession   NZ_CP143956
Coordinates   3497494..3499851 (+) Length   785 a.a.
NCBI ID   WP_014472140.1    Uniprot ID   -
Organism   Bacillus amyloliquefaciens strain Fad 108     
Function   homologous recombination (predicted from homology)   
Homologous recombination

Genomic Context


Location: 3492494..3504851
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  VXF94_RS18035 (VXF94_18035) - 3493868..3494164 (+) 297 WP_013353036.1 post-transcriptional regulator -
  VXF94_RS18040 (VXF94_18040) secDF 3494201..3496420 (+) 2220 WP_013353035.1 protein translocase subunit SecDF -
  VXF94_RS18045 (VXF94_18045) - 3496551..3497048 (+) 498 WP_013353034.1 cation:proton antiporter regulatory subunit -
  VXF94_RS18050 (VXF94_18050) - 3497112..3497438 (+) 327 WP_013353033.1 lipopolysaccharide assembly LapA domain-containing protein -
  VXF94_RS18055 (VXF94_18055) recJ 3497494..3499851 (+) 2358 WP_014472140.1 single-stranded-DNA-specific exonuclease RecJ Machinery gene
  VXF94_RS18060 (VXF94_18060) - 3499857..3500369 (+) 513 WP_013353031.1 adenine phosphoribosyltransferase -
  VXF94_RS18065 (VXF94_18065) relA 3500528..3502732 (+) 2205 WP_014472139.1 GTP diphosphokinase -
  VXF94_RS18070 (VXF94_18070) dtd 3502745..3503188 (+) 444 WP_014472138.1 D-aminoacyl-tRNA deacylase -
  VXF94_RS18075 (VXF94_18075) - 3503217..3504770 (-) 1554 WP_014470771.1 SH3 domain-containing protein -

Sequence


Protein


Download         Length: 785 a.a.        Molecular weight: 87327.79 Da        Isoelectric Point: 5.0316

>NTDB_id=932232 VXF94_RS18055 WP_014472140.1 3497494..3499851(+) (recJ) [Bacillus amyloliquefaciens strain Fad 108]
MLASKMRWEIQQPDKEKVKSLTEQLDITPLVASLLVKRGFDTAESARLFLHTKDADFYDPYELKGMREAVDRIKLAVSRG
EPIMIYGDYDADGVTSTSVMQTALRQLSANVDFYIPDRFTEGYGPNEQAFRSIKERGFSLIITVDTGIAAVHEAEVAKEL
GLDVIITDHHEPGPELPDVFAIIHPKQPGCSYPFKELAGVGVAFKLAHALTGSLPEAMLDLAAIGTVADLVPLHDENRLI
ASLGIERLRTTNRPGLKALIKLSGGDIGQADEETIGFQVAPRLNAVGRIEQADPAVHLLMTDDQFEAEELASDIDRLNKE
RQKMVKTMTEEAVEMVQQQGGNPSAIVVAKAGWNPGVVGIVASKLAERFYRPAVVLGMDEEQGIAKGSARSIRGFNLFTS
LSQCRDILPHFGGHPMAAGMTLKAEDVADLRDRLNQMAEETLTEEDFIPVQEVDLVCGVEDITVESITELNMLSPFGMLN
PKPHVMVENAVLDEVRLIGANKNHVKMTVKNDSAALDCVGFNKGELEAGIVPGSTISIVGEMSINEWNNRKKPQLMIKDA
AVPEWQLFDIRGKRMWEDTVTALPKEKRVLISFNEKTARKLRAELSGELAEITSESEAEALPLDGKYAVFLDVPPSADRL
QRLLDGKKPERIYFVFINHEEHFLSSFPSRNDFKWFYAFLLKRGTFNLGKHGSELARHRGWSIDTINFMTKVFFDLGFVK
IEDGVLSVVSGAKKRDLADSQTYQVKQQLMELDQKLNYSAAHELKEWLNKLMNQGSEAYESTRRT

Nucleotide


Download         Length: 2358 bp        

>NTDB_id=932232 VXF94_RS18055 WP_014472140.1 3497494..3499851(+) (recJ) [Bacillus amyloliquefaciens strain Fad 108]
ATGTTAGCGTCAAAAATGCGCTGGGAAATCCAGCAGCCGGATAAGGAAAAGGTCAAATCACTCACAGAACAATTGGACAT
AACACCTCTTGTGGCATCGCTGCTTGTAAAAAGAGGTTTTGATACTGCCGAAAGTGCAAGGCTGTTTTTACATACAAAGG
ATGCAGACTTTTATGACCCGTATGAATTAAAGGGAATGCGGGAAGCAGTTGATCGGATAAAGCTGGCGGTTTCCCGCGGG
GAACCGATTATGATTTACGGAGATTACGATGCAGACGGCGTTACAAGCACGTCAGTGATGCAGACGGCGCTCAGACAGCT
GTCAGCGAACGTTGACTTTTATATTCCCGACCGTTTCACAGAAGGCTACGGCCCGAATGAACAAGCTTTCCGCTCCATAA
AAGAGCGGGGATTTTCGCTCATCATTACAGTGGATACGGGTATCGCCGCCGTTCATGAAGCCGAAGTCGCAAAAGAGCTC
GGTTTAGACGTCATTATTACCGACCACCATGAGCCGGGACCCGAGCTTCCTGACGTATTTGCGATTATCCACCCGAAGCA
GCCGGGCTGCAGCTATCCGTTTAAAGAATTGGCCGGCGTCGGTGTGGCGTTTAAGCTTGCCCACGCGCTTACGGGTTCTT
TGCCGGAAGCTATGCTGGACTTGGCGGCGATCGGTACGGTTGCTGATCTGGTGCCGCTGCATGATGAAAACAGATTAATA
GCGTCGCTTGGAATCGAAAGGCTTCGGACGACAAATCGGCCGGGTCTCAAAGCTCTGATTAAGCTTTCCGGCGGAGATAT
CGGACAAGCCGATGAGGAAACGATCGGGTTTCAGGTCGCACCGAGGCTGAATGCCGTCGGAAGAATAGAACAGGCTGATC
CCGCGGTGCACCTGTTGATGACCGATGACCAGTTTGAAGCGGAGGAGCTGGCTTCGGATATTGACCGGCTGAATAAAGAG
CGGCAGAAAATGGTGAAAACCATGACCGAAGAGGCTGTTGAAATGGTTCAGCAGCAAGGCGGAAACCCTTCTGCCATTGT
CGTGGCAAAAGCCGGCTGGAATCCGGGAGTTGTCGGTATTGTCGCATCGAAGCTGGCTGAACGCTTTTACCGGCCCGCTG
TTGTGCTGGGGATGGATGAGGAGCAGGGAATCGCCAAAGGGTCGGCGCGAAGCATCAGAGGCTTTAACCTTTTTACGAGC
CTGTCACAGTGCAGAGACATTCTTCCTCATTTCGGCGGACATCCGATGGCCGCAGGAATGACTTTGAAGGCTGAAGATGT
GGCGGATTTAAGGGATCGGCTGAATCAAATGGCTGAAGAAACCCTTACCGAAGAGGATTTTATCCCCGTTCAGGAGGTTG
ATCTTGTCTGCGGCGTCGAAGACATCACCGTTGAAAGCATTACAGAATTGAATATGCTGTCGCCGTTCGGCATGCTAAAC
CCTAAACCTCATGTGATGGTGGAAAACGCCGTGCTTGATGAGGTGCGCCTGATCGGAGCAAATAAAAATCACGTGAAAAT
GACGGTGAAAAATGATTCCGCCGCTCTCGACTGCGTCGGCTTTAACAAAGGAGAGCTTGAAGCCGGGATTGTTCCCGGAT
CAACGATTTCCATTGTCGGCGAGATGTCTATTAATGAATGGAACAACAGAAAGAAACCCCAGCTGATGATTAAAGATGCT
GCGGTGCCGGAATGGCAGCTTTTTGATATCAGGGGCAAGCGGATGTGGGAAGATACGGTCACTGCGCTGCCTAAGGAAAA
ACGGGTGCTCATCAGCTTTAACGAAAAAACCGCCCGAAAGCTCCGTGCCGAGCTTTCGGGTGAGCTGGCTGAGATCACGT
CGGAATCCGAAGCAGAAGCTCTTCCGCTTGACGGAAAGTATGCCGTTTTTCTGGATGTGCCGCCATCAGCGGACCGCCTC
CAGCGTTTGCTTGACGGGAAGAAGCCGGAACGGATTTATTTTGTTTTTATTAATCATGAAGAACATTTCCTGTCCTCATT
TCCATCGCGGAATGACTTCAAGTGGTTTTACGCATTTCTCTTGAAAAGGGGCACTTTTAACTTAGGCAAGCATGGTTCAG
AGCTTGCGAGACACAGAGGATGGTCAATTGACACAATCAATTTCATGACAAAGGTGTTTTTTGATCTCGGTTTTGTTAAA
ATAGAAGATGGTGTGCTGTCTGTCGTGAGCGGCGCGAAAAAACGCGACCTCGCAGATTCGCAAACCTATCAGGTAAAACA
GCAGCTGATGGAATTAGACCAGAAGCTCAATTATTCCGCAGCCCATGAGCTGAAGGAATGGCTGAATAAGCTGATGAACC
AAGGTTCAGAGGCTTATGAAAGTACGAGGAGGACATAG


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
  recJ Bacillus subtilis subsp. subtilis str. 168

81.679

100

0.818