Detailed information    

insolico Bioinformatically predicted

Overview


Name   addB   Type   Machinery gene
Locus tag   MHI58_RS05270 Genome accession   NZ_CP152035
Coordinates   1051933..1055442 (+) Length   1169 a.a.
NCBI ID   WP_045034713.1    Uniprot ID   -
Organism   Bacillus sp. FSL K6-2869     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 1046933..1060442
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  MHI58_RS05240 (MHI58_05240) lepB 1047234..1047746 (+) 513 WP_007499139.1 signal peptidase I -
  MHI58_RS05245 (MHI58_05245) - 1047986..1049128 (-) 1143 WP_045034757.1 AbrB family transcriptional regulator -
  MHI58_RS05250 (MHI58_05250) - 1049405..1049827 (+) 423 WP_007499135.1 BlaI/MecI/CopY family transcriptional regulator -
  MHI58_RS05255 (MHI58_05255) - 1049820..1050659 (+) 840 WP_017360221.1 M56 family metallopeptidase -
  MHI58_RS05260 (MHI58_05260) - 1050717..1051127 (+) 411 WP_008348626.1 DoxX family protein -
  MHI58_RS05265 (MHI58_05265) - 1051320..1051766 (-) 447 WP_007499129.1 ferritin-like domain-containing protein -
  MHI58_RS05270 (MHI58_05270) addB 1051933..1055442 (+) 3510 WP_045034713.1 helicase-exonuclease AddAB subunit AddB Machinery gene
  MHI58_RS05275 (MHI58_05275) addA 1055420..1059124 (+) 3705 WP_368004381.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  MHI58_RS05280 (MHI58_05280) sbcD 1059150..1060325 (+) 1176 WP_007499123.1 exonuclease subunit SbcD -

Sequence


Protein


Download         Length: 1169 a.a.        Molecular weight: 134674.62 Da        Isoelectric Point: 5.2365

>NTDB_id=986048 MHI58_RS05270 WP_045034713.1 1051933..1055442(+) (addB) [Bacillus sp. FSL K6-2869]
MEIQFLAGRSGSGKTTAILEEIKEQLRLDPLGPPIIFLVPDQMTFLMEYELAKTSEAGGMIRAKVFSFTRLAWSILQQTG
GANRQFVTSTGIQMLLRKVIEEQKDKFKVFKKASDKPGFVEQIEKTMAEFKRYCMMPEDIEKISASSMHSEYTEERRAAE
KLHDLHVLYQQMEQHLQDEYVHSEDYLTLLAQQIPLSEELRGAHIYIDGFYQFTPQQLLVIEQLLLHAEKITAAFTVDRS
YHDTQPNELDLFRMTGKTYSQLYQLAKECGAAISENILERNKRHLHTPDLAYLENQYEQRPLQPYQEETPHLTVSKSANK
RAEIEGVARDILDLVRGEGLRLRDISIVARHVDDYKDTLKEVFRDYDIPFFIDGNESMQYHPLIEFIRSSLDVIKGNWRY
EAVFRCVKTEFLFPLELAKNKAREQADQLENYCIAYGVKGERWTNGSRFHYRRFQSLDEDFGQTDQEIEMEQMLNDVKEW
IVPPLFQLQKRLKKAQKLRDMVEAVYVFLEEAQVPEKLEKARLEAEEAGRLAEAMQHGQVWDAVIQLMDEFVEMLGEEEL
SFPLFQQMIDTGLSSLKFALIPPSLDQVFIGSMDLSRMYQVKCTFVIGVNDGVIPARPSDESVLSEDDREWLKRAGAELA
ETGKERLLDEQFLIYQALSSPSHYLYLSYSTSDTEGRSLLPSTLIKYCEELMPNHQQALYVLDPEQLDDQEQLKFVTNEH
VSLSYTVSQLQQWLNQYPISGVWWSVYNHLMTSSNRDVSKKIMSSLFFTNRAKRLNPNVTKELYGDHIQGSVSRMEKFNA
CAFSHFASHGLKLKDRQFYKLEAPDIGQLFHSALKLISDTLVEQKKDWKNLTKEDCVTYSRHAIEQLAPRLQKEILLSSN
RHAYIKEKLQKILIRVSSILSEHAKVSGFSPVGLELGFGGQGPLPPFTFQLKNGCTMELVGRIDRVDKAEGSKGLLLRIV
DYKSSEKGLDLAEVYYGLALQMLTYLDLTITYSKEWLGMEATPAGILYFHIHDPLIQAPIPLAEDAIEQEILKKFKMKGL
LLEDVEAVKLMDQTLESGRSQVIQAGLKKDGSFRSDSAVLSEDHFHILTKHVRRTFEEAGERITSGEVEINPYKLKDQTP
CRFCSFKSICQFDESIEDNEFRVLTSEKDDVMLDRIKKEGDQYANTKTE

Nucleotide


Download         Length: 3510 bp        

>NTDB_id=986048 MHI58_RS05270 WP_045034713.1 1051933..1055442(+) (addB) [Bacillus sp. FSL K6-2869]
GTGGAGATTCAGTTTTTAGCAGGCAGATCGGGGAGTGGAAAAACGACTGCAATTCTAGAAGAAATCAAAGAACAACTGCG
GCTTGATCCGCTGGGTCCGCCAATCATTTTTTTAGTCCCGGATCAAATGACATTTTTAATGGAATATGAGCTTGCAAAAA
CGTCTGAAGCTGGTGGAATGATCAGGGCCAAAGTCTTTAGTTTTACTCGGCTTGCCTGGTCTATATTACAGCAGACTGGC
GGTGCGAACCGTCAATTTGTCACAAGCACAGGGATTCAAATGCTCTTAAGAAAAGTAATAGAAGAACAGAAAGACAAGTT
TAAGGTATTCAAAAAGGCGAGTGATAAACCGGGATTTGTTGAGCAAATAGAAAAGACGATGGCTGAATTCAAAAGGTACT
GTATGATGCCGGAGGATATTGAAAAAATTTCGGCATCCAGTATGCATTCAGAGTATACAGAAGAAAGACGTGCGGCGGAA
AAATTGCATGATCTTCATGTTCTTTATCAGCAGATGGAGCAGCATCTGCAAGATGAGTATGTGCACTCAGAGGATTACTT
GACACTTCTGGCTCAGCAAATTCCTTTATCAGAAGAATTGAGAGGGGCACACATTTATATAGATGGTTTTTATCAGTTTA
CCCCCCAGCAGCTTCTTGTCATTGAACAGCTTTTGCTACATGCCGAAAAAATAACAGCTGCATTCACAGTGGATCGTTCC
TATCATGACACGCAGCCAAATGAACTTGATTTATTTCGCATGACAGGTAAGACATATTCCCAGCTTTATCAGCTGGCCAA
AGAGTGCGGAGCGGCTATTTCTGAGAACATTTTGGAGAGAAATAAGCGGCATCTTCATACCCCAGATCTAGCTTATTTAG
AAAATCAATATGAACAGAGACCTTTGCAGCCGTATCAAGAAGAAACGCCTCACCTTACCGTATCGAAAAGTGCAAATAAA
CGAGCTGAAATTGAGGGAGTAGCGAGAGATATTCTTGATTTAGTAAGAGGTGAAGGTCTTAGGTTACGAGACATCTCAAT
TGTTGCAAGACATGTAGACGACTATAAAGATACGTTAAAAGAGGTGTTTCGAGATTACGATATTCCTTTCTTTATTGATG
GAAATGAATCGATGCAGTATCATCCGCTCATTGAGTTCATTCGTTCGAGCCTCGATGTCATAAAAGGGAACTGGCGGTAT
GAGGCGGTGTTTCGCTGTGTGAAAACGGAGTTCTTATTTCCGCTTGAACTCGCTAAAAACAAAGCGAGAGAACAGGCGGA
TCAGCTGGAAAACTATTGTATTGCTTACGGTGTAAAAGGTGAACGCTGGACGAATGGTTCACGATTTCATTATCGCCGCT
TCCAATCACTAGATGAAGATTTTGGACAAACCGATCAAGAAATAGAAATGGAGCAAATGCTGAATGATGTAAAAGAATGG
ATTGTTCCCCCTCTCTTTCAATTGCAAAAAAGATTGAAAAAAGCGCAAAAGCTAAGAGACATGGTGGAGGCAGTGTATGT
CTTTCTAGAAGAAGCCCAAGTGCCAGAAAAGCTTGAAAAGGCAAGGCTTGAGGCAGAAGAAGCAGGCAGGTTAGCTGAAG
CGATGCAGCATGGGCAAGTGTGGGATGCTGTCATTCAATTGATGGATGAATTTGTTGAAATGCTGGGCGAGGAGGAGCTC
TCATTTCCATTATTTCAACAGATGATAGATACAGGACTGTCCTCTCTCAAGTTCGCTTTGATTCCCCCTTCACTTGATCA
AGTGTTTATCGGAAGTATGGATTTATCCAGAATGTATCAAGTAAAGTGTACGTTTGTTATTGGAGTAAATGATGGAGTTA
TACCTGCACGGCCCTCTGATGAAAGTGTATTGTCTGAAGACGACCGGGAATGGTTAAAACGGGCAGGAGCAGAGCTGGCA
GAGACAGGGAAGGAACGGCTGCTGGATGAACAATTTTTGATATATCAAGCGCTGTCCAGTCCATCGCACTACCTGTATTT
ATCCTATTCAACTTCAGATACGGAAGGGCGGTCTCTTTTGCCTTCGACCCTCATCAAGTATTGTGAGGAACTGATGCCAA
ACCATCAGCAAGCCCTCTATGTGTTAGATCCAGAGCAGTTGGATGATCAGGAGCAATTAAAATTTGTAACAAACGAGCAT
GTCTCGTTATCCTATACCGTTTCGCAGCTGCAACAATGGCTCAATCAATATCCGATCAGCGGCGTATGGTGGAGTGTATA
TAATCATTTGATGACCTCGTCCAACCGCGACGTATCAAAAAAAATCATGTCCAGCTTGTTCTTTACCAATAGAGCGAAAC
GTTTAAATCCGAATGTCACAAAAGAACTTTACGGTGACCATATTCAGGGCAGTGTTTCAAGAATGGAGAAATTCAATGCA
TGTGCATTTTCTCATTTTGCTTCCCACGGGCTAAAACTAAAAGATCGACAATTTTACAAATTAGAAGCACCTGATATCGG
CCAGCTCTTTCACTCGGCTTTAAAACTGATTTCAGATACGCTTGTTGAACAAAAAAAGGATTGGAAAAACTTAACGAAGG
AAGATTGTGTGACCTACTCAAGGCATGCAATTGAACAGCTGGCTCCACGTCTGCAAAAAGAAATTTTATTAAGCTCTAAT
CGGCATGCTTATATAAAAGAAAAGCTCCAAAAAATCCTCATCAGGGTGTCTTCTATATTAAGCGAACATGCAAAAGTGAG
CGGATTCTCTCCGGTTGGACTTGAGTTAGGTTTTGGAGGTCAAGGACCTCTGCCGCCGTTTACTTTTCAATTAAAAAACG
GCTGCACGATGGAGCTTGTTGGAAGGATTGACCGAGTGGATAAAGCAGAAGGATCAAAAGGACTTCTATTAAGAATTGTC
GACTATAAGTCCAGTGAGAAGGGACTTGATCTAGCAGAAGTTTACTACGGTTTAGCCTTGCAAATGCTCACTTATTTAGA
CCTGACCATTACGTATTCTAAAGAATGGCTTGGCATGGAAGCGACACCGGCAGGAATTTTATACTTCCATATTCATGACC
CGCTCATTCAAGCCCCTATTCCGCTCGCAGAGGATGCAATTGAGCAGGAAATATTGAAGAAATTTAAAATGAAGGGTCTA
TTGCTCGAAGATGTGGAAGCAGTGAAGTTGATGGATCAAACACTCGAATCAGGAAGATCACAAGTCATCCAAGCTGGTTT
GAAAAAGGATGGTTCTTTCCGATCTGACTCTGCGGTATTAAGTGAAGATCATTTTCATATTCTCACAAAACACGTTCGGC
GAACCTTTGAAGAGGCAGGAGAAAGAATTACAAGCGGTGAGGTAGAGATAAACCCATATAAATTAAAGGATCAAACCCCT
TGCCGCTTTTGCTCCTTTAAGTCTATTTGCCAATTTGATGAATCAATAGAAGATAATGAATTTAGGGTGCTCACCTCTGA
GAAGGATGATGTCATGTTAGACCGGATCAAAAAAGAAGGGGATCAGTATGCAAATACCAAAACCGAATAA

Domains


Predicted by InterproScan.

(790-1131)


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
  addB Bacillus subtilis subsp. subtilis str. 168

66.667

99.316

0.662


Multiple sequence alignment