Detailed information    

insolico Bioinformatically predicted

Overview


Name   addB   Type   Machinery gene
Locus tag   MHI23_RS05255 Genome accession   NZ_CP152024
Coordinates   1048445..1051954 (+) Length   1169 a.a.
NCBI ID   WP_149125792.1    Uniprot ID   -
Organism   Bacillus sp. FSL M7-0003     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 1043445..1056954
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  MHI23_RS05225 (MHI23_05225) lepB 1043962..1044474 (+) 513 WP_149125793.1 signal peptidase I -
  MHI23_RS05230 (MHI23_05230) - 1044513..1045658 (-) 1146 WP_149126690.1 AbrB family transcriptional regulator -
  MHI23_RS05235 (MHI23_05235) - 1045925..1046347 (+) 423 WP_024425495.1 BlaI/MecI/CopY family transcriptional regulator -
  MHI23_RS05240 (MHI23_05240) - 1046340..1047179 (+) 840 WP_024425496.1 M56 family metallopeptidase -
  MHI23_RS05245 (MHI23_05245) - 1047237..1047647 (+) 411 WP_024425497.1 DoxX family protein -
  MHI23_RS05250 (MHI23_05250) - 1047846..1048292 (-) 447 WP_024425498.1 ferritin-like domain-containing protein -
  MHI23_RS05255 (MHI23_05255) addB 1048445..1051954 (+) 3510 WP_149125792.1 helicase-exonuclease AddAB subunit AddB Machinery gene
  MHI23_RS05260 (MHI23_05260) addA 1051932..1055636 (+) 3705 WP_197172759.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  MHI23_RS05265 (MHI23_05265) sbcD 1055663..1056838 (+) 1176 WP_024425501.1 exonuclease subunit SbcD -

Sequence


Protein


Download         Length: 1169 a.a.        Molecular weight: 134959.15 Da        Isoelectric Point: 5.4870

>NTDB_id=985432 MHI23_RS05255 WP_149125792.1 1048445..1051954(+) (addB) [Bacillus sp. FSL M7-0003]
MEIQLLAGRSGSGKTTAILEEIKEQLRLDPLGPPIIFLVPDQMTFLMEYELAKTSEAGGMIRAKVFSFTRLAWSILQQTG
GANRQFVTSTGIQMLLRKVIEEEKEKFKVFKKASDKPGFVEQIEKTMAEFKRYCMLPEDIEKISLSSMHSEYTEERRAAE
KLHDLHVLYQQMEQHLQDEYVHSEDYLTLLTQQIPLSEEIKGAHIYIDGFYQFTPQQLLVIEQLLLHAEKITAAFTVDRS
YHDKQPNELDLFRMTGKTYFQLYQLAKECGAAISEHILERNKRHLHTPDLAYLERQYEQRPVQPYQEVTPHLTVSKSASK
RAEIEGVAREILHLVREEGLRLRDISIVARHVDDYKDTLKEVFRDYDIPFFIDGNESMQYHPLIELIRSSMDVIKGNWRY
EAVFRCVKTEFLFPLELARNKAREQADQLENYCIAYGVKGERWTNGSRFHYRRFQSLDEDFGQTDQEIEMEQMLNDVKEW
IAPPLFQLQKRLKKAQKVKDMVEAVYIFLEEIQVPEKLEKARLEAEEAGRLAEAMQHGQVWDAVIQLMDEFVEMLGEEEL
SFPLFQQMMDTGLASLKFALIPPSLDQVFIGSMDLSRMYQVKCMFIIGVNDGVIPARPSDESVLSEDDREWLKRAGAELA
ETGKERLLDEQFLIYQALSSPSHHLYLSYSVSDEEGRSLLPSTLIKYCQELMPNHEHALYVLDPEQLEDKEQLKFVANEH
VSLSYTVSQLQQWLNQYPISGVWWSVYNYLMTSSHRDVSKNILSSLFFSNRAKRLKPNVTKELYGDHIQGSVSRMEKFNA
CAFSHFASHGLKLKDRQFYKLEAPDIGQLFHSALKHISDTLVEQKKDWKNLTKDDCVNYSRHAIEQLAPRLQKEILLSSN
RHAYIKEKLQKILIRVSSILSEHARVSGFSPVGLELGFGGQGPLPPFTFQLKNGCTMELVGRIDRVDKAEGSKGLLLRIV
DYKSSEKGLDLAEVYYGLALQMLTYLDLTITYSKEWLGVEATPAGILYFHIHDPLIQAPIPLAEDEIEQEIFKKFKMKGL
LLEDVEAVKLMDQTLESGRSQVIQAGLKKDGSFRSDSAVLSEDHFHILTQHVRRTFEEAGERITNGEVAINPYKLKDQTP
CRFCSFKSICQFDESIEDNEFRVLSSEKDDVVIDRIKKEGDQYANTKTE

Nucleotide


Download         Length: 3510 bp        

>NTDB_id=985432 MHI23_RS05255 WP_149125792.1 1048445..1051954(+) (addB) [Bacillus sp. FSL M7-0003]
GTGGAGATTCAGTTATTAGCAGGCAGATCGGGGAGTGGAAAAACGACTGCAATCTTAGAGGAAATCAAAGAACAGCTTCG
GCTTGATCCGTTGGGTCCGCCAATCATTTTTTTAGTCCCGGATCAAATGACATTCTTAATGGAATACGAGCTTGCAAAAA
CGTCTGAAGCTGGCGGGATGATCAGGGCCAAAGTATTTAGTTTCACGCGTCTTGCTTGGTCTATTTTACAGCAGACTGGC
GGAGCGAACCGGCAATTTGTGACAAGCACAGGAATTCAAATGCTTTTAAGAAAAGTGATTGAAGAGGAGAAAGAAAAGTT
TAAGGTATTCAAAAAAGCGAGTGATAAGCCGGGGTTTGTGGAGCAAATCGAAAAGACGATGGCTGAGTTCAAGAGATACT
GCATGTTGCCGGAGGATATTGAAAAAATTTCATTATCGAGCATGCATTCAGAGTATACAGAAGAAAGACGGGCAGCCGAG
AAATTGCATGATCTGCATGTTCTTTATCAGCAGATGGAGCAGCATTTACAAGATGAATATGTGCACTCAGAAGACTATTT
GACACTTCTCACGCAGCAAATTCCTTTATCTGAAGAAATAAAAGGAGCACACATTTATATAGATGGTTTTTATCAATTTA
CACCACAGCAGCTCCTCGTCATTGAACAGCTTCTGCTGCATGCTGAGAAAATAACGGCTGCTTTCACAGTGGATCGTTCC
TATCATGATAAGCAGCCAAATGAACTTGATTTATTTCGTATGACAGGTAAAACGTATTTCCAGCTCTATCAGCTTGCCAA
AGAGTGCGGAGCGGCCATTTCTGAGCACATTTTGGAGAGAAATAAACGTCATCTTCATACGCCGGATCTTGCTTATTTAG
AACGGCAATATGAGCAGAGACCGGTGCAGCCATATCAGGAAGTCACTCCTCATCTCACAGTATCTAAAAGTGCGAGTAAA
CGAGCTGAAATTGAGGGAGTAGCGAGAGAAATTCTTCACTTAGTGAGAGAAGAAGGACTTAGACTGCGAGATATTTCGAT
TGTAGCGCGGCATGTAGACGACTATAAAGATACGTTAAAAGAGGTTTTTCGAGATTACGATATTCCTTTTTTTATTGATG
GAAATGAATCGATGCAGTATCACCCGCTCATTGAATTGATTCGTTCGAGCATGGATGTCATAAAAGGAAACTGGCGGTAT
GAGGCCGTGTTTCGATGCGTGAAGACAGAGTTCTTATTTCCGCTCGAACTTGCCAGAAACAAAGCGAGAGAACAGGCAGA
TCAGCTTGAAAACTACTGTATTGCTTATGGTGTAAAAGGAGAACGCTGGACAAACGGCTCTCGTTTCCATTACAGGCGGT
TCCAATCCTTAGATGAGGATTTTGGACAAACAGATCAAGAAATTGAAATGGAACAAATGCTGAATGATGTAAAGGAATGG
ATCGCACCTCCGCTTTTCCAATTGCAAAAAAGGCTGAAAAAAGCGCAAAAGGTAAAAGACATGGTGGAGGCAGTCTATAT
CTTTTTAGAGGAAATACAAGTGCCGGAAAAACTTGAAAAGGCGAGGCTGGAGGCTGAGGAAGCAGGTAGATTAGCTGAAG
CCATGCAGCATGGACAAGTATGGGATGCTGTAATTCAATTAATGGATGAATTTGTTGAAATGCTCGGTGAGGAGGAGCTC
TCATTTCCTTTATTCCAACAGATGATGGATACAGGACTGGCATCTCTAAAATTCGCTTTAATTCCGCCTTCACTCGACCA
AGTATTTATCGGAAGTATGGATTTATCGAGAATGTATCAAGTGAAGTGCATGTTTATCATTGGGGTAAATGATGGCGTTA
TTCCCGCACGCCCTTCTGACGAAAGTGTATTGTCTGAGGATGACAGGGAATGGTTAAAGCGAGCAGGAGCAGAGCTTGCA
GAGACAGGAAAGGAACGGCTGCTAGATGAGCAATTTTTAATTTACCAAGCGCTGTCGAGTCCATCCCATCATTTGTATCT
GTCTTATTCAGTGTCAGATGAAGAGGGGCGCTCTCTATTGCCTTCGACTCTTATCAAGTATTGTCAGGAGCTTATGCCAA
ATCATGAGCATGCTTTGTATGTGTTAGACCCGGAACAGCTGGAGGACAAGGAGCAATTAAAATTTGTAGCGAATGAGCAT
GTCTCGTTATCGTATACTGTCTCGCAGCTGCAGCAATGGCTCAACCAATATCCCATCAGTGGTGTATGGTGGAGTGTCTA
TAATTATTTGATGACGTCATCTCATCGGGATGTGTCAAAAAACATCTTGTCGAGTTTGTTTTTTTCAAATCGAGCGAAAC
GCTTAAAACCAAACGTCACAAAAGAACTTTATGGTGATCACATTCAAGGCAGTGTTTCAAGAATGGAGAAATTCAATGCG
TGTGCATTTTCTCACTTTGCTTCCCACGGGTTAAAACTAAAGGACCGGCAATTTTATAAATTGGAAGCACCCGATATCGG
CCAGCTGTTTCACTCGGCCTTAAAGCATATTTCAGATACGCTTGTTGAACAAAAAAAGGATTGGAAAAACCTAACGAAGG
ATGACTGTGTCAACTATTCAAGACATGCAATCGAACAGCTTGCTCCGCGTCTTCAAAAGGAAATCCTATTAAGCTCTAAT
CGGCATGCTTATATTAAAGAAAAGCTCCAGAAAATCTTGATTCGAGTCTCTTCTATATTAAGTGAGCATGCAAGAGTGAG
TGGATTTTCTCCCGTCGGGCTTGAGTTAGGCTTTGGCGGCCAAGGACCACTTCCACCGTTTACTTTTCAATTGAAAAATG
GCTGCACGATGGAGCTTGTCGGAAGAATTGACCGGGTGGATAAAGCAGAAGGTTCAAAAGGGCTGCTGTTGAGAATCGTC
GACTACAAATCGAGTGAGAAAGGTCTTGATCTAGCAGAAGTATACTATGGGCTGGCCTTGCAAATGCTCACATACTTAGA
TCTGACCATTACGTATTCGAAGGAGTGGCTCGGTGTAGAAGCAACACCAGCTGGCATTTTATACTTCCATATTCATGATC
CGCTCATTCAAGCACCGATTCCGCTTGCAGAGGATGAAATTGAACAGGAAATATTCAAGAAATTTAAAATGAAAGGTCTA
TTGCTTGAAGATGTAGAAGCGGTAAAGCTAATGGATCAAACGCTTGAATCAGGAAGATCACAAGTCATTCAAGCCGGTTT
GAAAAAAGATGGGTCTTTCCGTTCTGACTCTGCTGTTTTAAGTGAAGATCATTTCCATATACTCACACAGCATGTTCGGC
GCACGTTTGAAGAGGCTGGCGAAAGAATTACAAATGGCGAGGTAGCCATTAATCCATATAAATTGAAGGATCAAACACCA
TGCCGCTTTTGTTCATTTAAGTCTATTTGCCAATTTGATGAATCGATAGAGGATAATGAATTTAGAGTGCTTTCATCTGA
AAAGGATGATGTTGTGATAGACCGGATCAAAAAAGAAGGGGATCAGTATGCAAATACCAAAACCGAATAA

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

65.719

99.316

0.653


Multiple sequence alignment