Detailed information    

insolico Bioinformatically predicted

Overview


Name   recJ   Type   Machinery gene
Locus tag   RP72_RS14905 Genome accession   NZ_CP010314
Coordinates   2802912..2805272 (-) Length   786 a.a.
NCBI ID   WP_003246110.1    Uniprot ID   A0AAE2VH10
Organism   Bacillus subtilis subsp. subtilis strain 3NA isolate 1970 (Michel and Millet)     
Function   homologous recombination (predicted from homology)   
Homologous recombination

Genomic Context


Location: 2797912..2810272
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  RP72_RS14885 (RP72_14885) yrvJ 2797987..2799543 (+) 1557 WP_004399040.1 SH3 domain-containing protein -
  RP72_RS14890 (RP72_14890) dtd 2799570..2799968 (-) 399 WP_003229749.1 D-aminoacyl-tRNA deacylase -
  RP72_RS14895 (RP72_14895) relA 2800022..2802226 (-) 2205 WP_003229747.1 GTP diphosphokinase -
  RP72_RS14900 (RP72_14900) aptA 2802394..2802906 (-) 513 WP_003229745.1 adenine phosphoribosyltransferase -
  RP72_RS14905 (RP72_14905) recJ 2802912..2805272 (-) 2361 WP_003246110.1 single-stranded-DNA-specific exonuclease RecJ Machinery gene
  RP72_RS14910 (RP72_14910) yrvD 2805339..2805662 (-) 324 WP_003229740.1 lipopolysaccharide assembly LapA domain-containing protein -
  RP72_RS14915 (RP72_14915) yrvC 2805738..2806235 (-) 498 WP_003229739.1 cation:proton antiporter regulatory subunit -
  RP72_RS14920 (RP72_14920) secDF 2806393..2808606 (-) 2214 WP_003245970.1 protein translocase subunit SecDF -
  RP72_RS14925 (RP72_14925) comN 2808645..2808941 (-) 297 WP_004398498.1 post-transcriptional regulator ComN -

Sequence


Protein


Download         Length: 786 a.a.        Molecular weight: 88022.71 Da        Isoelectric Point: 5.1836

>NTDB_id=136291 RP72_RS14905 WP_003246110.1 2802912..2805272(-) (recJ) [Bacillus subtilis subsp. subtilis strain 3NA isolate 1970 (Michel and Millet)]
MLASKMRWEIQRPDQDKVKSLTEQLHITPLVASLLVKRGFDTAESARLFLHTKDADFYDPFEMKGMKEAADRIKQAISQQ
EKIMIYGDYDADGVTSTSVMLHTLQKLSAQVDFYIPDRFKEGYGPNEQAFRSIKERGFSLIITVDTGIAAVHEAKVAKEL
GLDVIITDHHEPGPELPDVRAIVHPKQPGCTYPFKELAGVGVAFKLAHALLGELPDELLDLAAIGTIADLVPLHDENRLI
ATLGLERLRRTNRLGLKELIKLSGGDIGEANEETVGFQLAPRLNAVGRIEQADPAVHLLMSEDSFEAEELAAEIDQLNKE
RQKMVSKMTDEAIEMVEQQGLDQTAIVVAKAGWNPGVVGIVASKLVDRFYRPAIVLGIDEEKGIAKGSARSIRGFNLFES
LSECRDILPHFGGHPMAAGMTLKAEDVPDLRSRLNEIADNTLTEEDFIPVQEVDLVCGVEDITVESIAEMNMLSPFGMLN
PKPHVLVENAVLEDVRKIGANKTHVKMTIRNESSQLDCVGFNKGELQEGIVPGSRISIVGEMSINEWNNRKKPQLMIKDA
AVSEWQLFDLRGKRTWEDTVSALPSAKRAIVSFKEDSTTLLQTEDLRREVHVISSKDQAKAFDLDGAYIVLLDPPPSLDM
LARLLEGKAPERIYFIFLNHEDHFLSTFPARDHFKWYYAFLLKRGAFDVKKHGSELAKHKGWSVETINFMTKVFFDLGFV
KIENGVLSVVSGAKKRDLTDSQTYQAKQQLMELDQKLNYSSAEELKEWLNKLMKQDSEAYESTRRT

Nucleotide


Download         Length: 2361 bp        

>NTDB_id=136291 RP72_RS14905 WP_003246110.1 2802912..2805272(-) (recJ) [Bacillus subtilis subsp. subtilis strain 3NA isolate 1970 (Michel and Millet)]
ATGTTAGCGTCAAAAATGCGATGGGAAATCCAGCGACCAGATCAGGATAAGGTCAAATCACTCACAGAACAATTGCATAT
AACACCTCTTGTTGCGTCCCTGCTTGTAAAAAGAGGCTTTGATACGGCAGAAAGCGCTAGGCTGTTTTTACATACAAAGG
ATGCCGATTTTTATGATCCTTTTGAAATGAAAGGCATGAAAGAAGCGGCAGATCGAATAAAACAGGCGATTTCACAACAA
GAAAAGATTATGATATATGGCGATTATGACGCCGATGGGGTTACAAGTACGTCAGTGATGCTTCACACGCTGCAAAAACT
GTCGGCTCAAGTTGATTTTTATATACCTGACCGTTTTAAAGAAGGATATGGACCTAATGAACAGGCGTTTCGTTCGATTA
AAGAACGGGGCTTCTCTTTGATCATTACGGTTGATACAGGAATTGCCGCTGTGCATGAAGCGAAGGTGGCAAAGGAACTC
GGACTGGATGTCATCATTACCGATCATCATGAACCGGGACCGGAGCTTCCGGATGTCCGTGCGATCGTCCACCCGAAGCA
GCCTGGCTGCACTTACCCGTTTAAAGAGCTTGCCGGGGTTGGAGTCGCGTTTAAGCTTGCCCACGCTTTATTGGGTGAAC
TTCCTGATGAACTGCTTGACCTGGCGGCTATCGGCACCATTGCCGATCTAGTCCCGCTGCATGACGAAAACAGATTAATA
GCAACACTAGGACTTGAAAGGCTTCGACGGACAAATCGGCTCGGCTTAAAAGAGCTGATTAAGCTGTCAGGCGGAGACAT
CGGAGAAGCGAACGAAGAAACAGTCGGATTTCAGCTCGCACCAAGGCTGAATGCCGTCGGAAGAATCGAACAGGCGGATC
CCGCTGTTCATTTGCTTATGTCAGAGGATTCGTTTGAAGCGGAAGAGCTTGCCGCAGAAATTGACCAGCTGAACAAAGAG
CGCCAAAAAATGGTCAGCAAAATGACGGATGAAGCGATTGAAATGGTTGAACAGCAAGGGCTCGATCAAACTGCAATTGT
CGTGGCCAAAGCCGGATGGAACCCGGGAGTCGTCGGGATTGTGGCTTCAAAGCTTGTGGACCGTTTCTACCGACCGGCCA
TTGTTCTTGGTATTGATGAAGAAAAGGGAATCGCTAAAGGTTCGGCCCGAAGCATCAGAGGATTTAATTTATTTGAGAGC
CTTTCTGAATGCAGAGATATTCTTCCTCATTTCGGCGGCCATCCAATGGCTGCGGGGATGACGCTGAAAGCCGAAGATGT
GCCGGATTTGCGAAGCAGGCTGAATGAAATAGCGGACAATACGCTTACGGAAGAGGATTTTATTCCCGTACAGGAAGTCG
ACCTTGTCTGCGGCGTCGAAGACATTACAGTTGAAAGCATCGCAGAAATGAACATGCTGTCTCCTTTTGGCATGCTGAAC
CCGAAACCGCACGTTCTCGTAGAAAATGCAGTACTGGAAGATGTCCGCAAGATAGGGGCAAATAAAACTCATGTCAAAAT
GACGATCAGAAACGAGTCGTCCCAGCTTGATTGCGTCGGTTTTAATAAAGGCGAGCTTCAAGAAGGCATCGTACCGGGTT
CAAGAATTTCCATTGTCGGTGAGATGTCAATCAACGAATGGAACAATCGAAAAAAGCCGCAGCTTATGATAAAGGATGCC
GCTGTTTCTGAATGGCAGCTGTTTGATTTAAGGGGAAAACGGACGTGGGAAGACACAGTTTCCGCCCTTCCATCTGCTAA
ACGGGCCATTGTCTCTTTCAAAGAAGACTCAACAACATTACTTCAAACTGAAGACCTTCGCCGAGAAGTGCACGTCATCA
GTTCTAAAGATCAAGCAAAGGCGTTTGACCTCGATGGTGCATATATTGTATTACTGGATCCGCCGCCTTCGCTGGACATG
CTCGCACGTTTGCTGGAAGGAAAGGCGCCCGAGCGGATATATTTTATTTTTCTCAATCATGAGGACCACTTTTTATCAAC
TTTTCCCGCAAGAGACCACTTTAAATGGTATTATGCGTTCTTGCTGAAAAGAGGCGCTTTTGACGTGAAAAAACACGGTT
CAGAGCTTGCAAAACATAAAGGCTGGTCCGTTGAAACAATCAATTTCATGACAAAGGTGTTTTTTGATCTCGGTTTTGTT
AAAATAGAGAATGGTGTGCTGTCTGTTGTGAGCGGAGCAAAGAAACGCGACTTAACAGACTCACAAACATATCAGGCGAA
ACAGCAGCTGATGGAACTGGATCAAAAGCTGAATTATTCTTCTGCTGAAGAGCTGAAGGAATGGCTGAATAAGCTGATGA
AACAAGATTCAGAGGCTTATGAAAGTACGAGGAGGACATAA


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

100

100

1


Multiple sequence alignment