Detailed information    

insolico Bioinformatically predicted

Overview


Name   addB   Type   Machinery gene
Locus tag   NSS78_RS05270 Genome accession   NZ_CP151974
Coordinates   1086111..1089620 (+) Length   1169 a.a.
NCBI ID   WP_212046098.1    Uniprot ID   -
Organism   Bacillus sp. FSL W8-0920     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 1081111..1094620
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  NSS78_RS05240 (NSS78_05240) lepB 1081621..1082133 (+) 513 WP_041815362.1 signal peptidase I -
  NSS78_RS05245 (NSS78_05245) - 1082168..1083313 (-) 1146 WP_342468374.1 AbrB family transcriptional regulator -
  NSS78_RS05250 (NSS78_05250) - 1083580..1084002 (+) 423 WP_003210872.1 BlaI/MecI/CopY family transcriptional regulator -
  NSS78_RS05255 (NSS78_05255) - 1083995..1084834 (+) 840 WP_327840159.1 M56 family metallopeptidase -
  NSS78_RS05260 (NSS78_05260) - 1084891..1085301 (+) 411 WP_106029930.1 DoxX family protein -
  NSS78_RS05265 (NSS78_05265) - 1085499..1085945 (-) 447 WP_003211961.1 ferritin-like domain-containing protein -
  NSS78_RS05270 (NSS78_05270) addB 1086111..1089620 (+) 3510 WP_212046098.1 helicase-exonuclease AddAB subunit AddB Machinery gene
  NSS78_RS05275 (NSS78_05275) addA 1089598..1093296 (+) 3699 WP_212046097.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  NSS78_RS05280 (NSS78_05280) sbcD 1093323..1094498 (+) 1176 WP_044139868.1 exonuclease subunit SbcD -

Sequence


Protein


Download         Length: 1169 a.a.        Molecular weight: 134856.81 Da        Isoelectric Point: 5.4406

>NTDB_id=982829 NSS78_RS05270 WP_212046098.1 1086111..1089620(+) (addB) [Bacillus sp. FSL W8-0920]
MEIQFLAGRSGSGKTTAILEEIKEQLRLDPLGPPIIFLVPDQMTFLMEYELAKTSEAGGMIRAKVFSFTRLAWSILQQTG
GANRQFVTSTGIQMLLRKVIEEQKDKFKVFKKASDKPGFVEQIEKTMAEFKRYCMLPEDIEKISASSMHSEYTEERRAAE
KLHDLHVLYQQMEQHLQDEYVHSEDYLTLLSQQIPSAEEIKGAHIYIDGFYQFTPQQLLVIEQLLLHAAKITAAFTVDRS
YHDRQPNELDLFRMTGKTYFQLYKLAKECGADISENIFERNHRHLYTPDLAYLEHQYEQRPVQPYQENTPHLTVSKSANK
RAEIEGVARDILDLVREKGLRLRDISIVARHVDDYKDTLKEVFRDYDIPFFIDGNESMQYHPLIELIRSSLDVIKGNWRY
EAVFRCVKTEFLFPLEITKNKAREQADQLENYCIAYGVKGERWTNGSRFHYRRFQSLDEDFRQTDQEIEMEQMLNDVKEW
IAPPLYQLQKRLKKAQKVRDMVEAVYVFLEEIQVPDKLEKARLEAEEAGRLAEAMQHGQVWDAVIQLMDEFVDMLGDEEL
SFPLFQQMIDTGLASLKFALIPPSLDQVFIGSMDLSRMYQVKCTFIIGVNDGVIPARPSDESVLSEDDREWLKRAGAELA
ETGKERLLDEQFLIYQALSSPSRHLYLSYAASDAEGRSLLPSTLIKYCQELMPNHQQALYVLDPEQLEDDEQLKFVANEH
VSLSYTISQLQQWLNQYPISSVWWSVYNYLMTSPHRDVSKNIMSSLFFTNRAKPLKPNVTKELYGDHIQGSVSRMEKFNA
CAFSHFASHGLKLKDRQFYKLEAPDIGQLFHSALKHISDTLVEQKKDWKNLTKEDCVTYSRHAIEQLAPRLQKEILLSSN
RHAYIKEKLQKILIRVSSILSEHAKLSGFSPVGLELGFGGQGPLPPFTFQLKNGCTMELVGRIDRVDKAEGSKGLLLRIV
DYKSSEKGLDLAEVYYGLALQMLTYLDLTITYSKEWLGVEATPAGILYFHIHDPLIQAPIPLAEDEIEQEIFKKFKMKGL
LLEDVEAVKLMDQTLDSGRSQVIQAGLKKDGSFRSDSAVLSEDHFHILTQHVRRTFEEAGERITNGEVAINPYKLKDQTP
CRFCSFKSICQFDESIEDNDFRVLTSEKDDVVIERIKKEGDQYANTKTE

Nucleotide


Download         Length: 3510 bp        

>NTDB_id=982829 NSS78_RS05270 WP_212046098.1 1086111..1089620(+) (addB) [Bacillus sp. FSL W8-0920]
GTGGAGATTCAGTTTTTAGCAGGCAGATCGGGGAGTGGAAAAACGACTGCAATCTTAGAGGAAATCAAAGAACAGCTTCG
GCTTGATCCGTTGGGTCCGCCAATCATTTTTTTAGTCCCGGATCAAATGACATTTTTAATGGAATATGAGCTTGCGAAAA
CGTCTGAAGCTGGTGGAATGATCAGAGCTAAAGTATTTAGTTTCACTCGTCTTGCTTGGTCTATTTTACAGCAGACTGGT
GGAGCGAACCGGCAATTTGTGACAAGCACAGGAATTCAAATGCTTTTAAGAAAAGTGATTGAAGAGCAGAAAGACAAGTT
TAAAGTATTCAAAAAAGCGAGTGATAAGCCGGGGTTTGTGGAGCAAATCGAAAAAACGATGGCTGAATTCAAAAGATACT
GTATGCTGCCAGAGGATATTGAGAAGATTTCAGCGTCTAGCATGCATTCAGAGTATACAGAAGAAAGACGGGCAGCCGAA
AAATTGCATGATCTCCATGTTCTTTATCAGCAGATGGAGCAGCATTTACAAGATGAATATGTGCACTCAGAAGACTATTT
GACTCTTCTTTCCCAGCAAATTCCTTCAGCTGAAGAAATAAAAGGAGCACACATCTATATAGATGGTTTTTATCAATTTA
CACCGCAGCAGCTTCTTGTCATTGAACAGCTCTTGCTGCATGCAGCAAAAATAACTGCGGCTTTCACAGTAGATCGATCC
TATCATGATAGGCAGCCAAATGAACTTGATTTATTTCGTATGACAGGTAAAACGTATTTCCAGCTCTATAAGCTTGCTAA
AGAGTGCGGAGCTGACATTTCTGAAAATATTTTTGAAAGAAATCATCGGCACCTTTATACACCAGATCTTGCTTATTTAG
AACACCAATATGAGCAGCGGCCCGTTCAGCCATATCAGGAAAACACCCCTCATCTCACAGTGTCTAAAAGTGCAAATAAA
CGAGCTGAAATTGAGGGAGTAGCGAGAGATATCCTTGATTTAGTGAGAGAAAAAGGACTCAGACTGCGAGATATCTCGAT
TGTAGCGCGGCATGTAGATGACTATAAAGATACGTTAAAAGAGGTTTTTCGAGATTACGATATTCCTTTTTTTATTGATG
GAAATGAATCGATGCAGTATCATCCGCTCATTGAATTAATTCGTTCGAGCTTGGATGTCATAAAAGGAAATTGGCGGTAT
GAAGCGGTATTTCGCTGCGTGAAAACAGAGTTCTTATTTCCGCTTGAAATCACTAAGAACAAAGCGAGAGAGCAGGCAGA
TCAGCTTGAAAACTATTGCATTGCTTATGGTGTAAAAGGAGAGCGCTGGACAAACGGTTCCCGGTTTCATTACAGGCGTT
TCCAATCATTAGATGAGGATTTCAGGCAAACAGATCAAGAAATTGAAATGGAACAAATGCTAAATGACGTCAAAGAATGG
ATCGCGCCCCCGCTTTACCAGTTGCAGAAAAGGCTCAAAAAAGCGCAAAAGGTAAGGGACATGGTAGAGGCTGTCTATGT
CTTTTTAGAAGAGATACAAGTACCAGATAAGCTTGAAAAGGCGAGGCTTGAGGCTGAAGAAGCAGGTCGATTAGCTGAAG
CAATGCAGCACGGGCAAGTATGGGATGCGGTGATTCAATTAATGGATGAATTTGTTGACATGCTAGGTGACGAAGAGCTC
TCATTTCCCTTATTCCAACAGATGATAGATACAGGGTTAGCTTCTCTAAAATTCGCTTTGATTCCGCCTTCACTCGACCA
AGTATTTATTGGAAGTATGGATTTATCCAGAATGTATCAAGTGAAGTGTACGTTTATCATTGGTGTAAATGATGGCGTTA
TTCCCGCACGTCCCTCTGATGAGAGTGTATTGTCTGAGGATGACCGAGAATGGTTAAAACGAGCAGGAGCAGAGCTAGCA
GAGACAGGAAAAGAACGGCTGCTAGATGAGCAATTTTTAATTTACCAAGCGTTATCAAGTCCATCCCGTCATTTGTATCT
ATCCTATGCGGCTTCTGATGCAGAAGGACGTTCTCTATTGCCTTCGACACTCATCAAGTATTGCCAAGAGCTTATGCCAA
ATCATCAACAGGCTCTTTATGTGTTAGATCCAGAACAACTGGAAGACGATGAGCAATTAAAATTTGTAGCGAATGAGCAT
GTTTCGTTGTCGTATACCATCTCACAGCTGCAGCAATGGCTCAATCAATATCCCATCAGCAGTGTATGGTGGAGTGTCTA
TAACTACTTAATGACATCTCCTCATCGGGATGTATCAAAAAACATCATGTCAAGCTTGTTCTTTACAAATCGAGCGAAGC
CATTAAAGCCTAATGTCACAAAAGAGCTTTACGGTGACCATATTCAGGGCAGTGTTTCAAGAATGGAGAAGTTCAATGCG
TGTGCATTCTCTCACTTTGCTTCCCACGGTTTAAAACTAAAGGATCGACAATTTTACAAATTGGAAGCACCCGATATCGG
CCAATTGTTTCACTCGGCTTTGAAGCATATTTCAGATACGCTAGTTGAACAAAAAAAGGATTGGAAAAACCTAACGAAGG
AAGATTGTGTCACCTATTCAAGACATGCAATCGAACAGCTTGCTCCGCGTCTTCAAAAGGAAATTCTATTAAGCTCTAAT
CGGCATGCTTATATTAAAGAAAAGCTTCAGAAAATCTTGATTCGAGTCTCTTCTATATTAAGTGAACATGCCAAATTGAG
TGGATTTTCTCCGGTAGGGCTTGAGTTAGGTTTTGGAGGTCAAGGGCCTTTGCCGCCGTTTACTTTTCAATTAAAGAATG
GCTGCACGATGGAGCTTGTCGGAAGGATTGACAGGGTAGATAAGGCAGAAGGTTCAAAAGGGCTGCTTTTAAGAATCGTC
GATTACAAATCCAGTGAGAAAGGTCTTGACCTAGCAGAAGTATACTATGGTCTTGCCTTGCAAATGCTCACATACTTAGA
CCTAACCATTACGTATTCGAAAGAGTGGCTCGGCGTAGAAGCAACGCCTGCTGGCATTTTATATTTCCATATTCATGATC
CGCTCATTCAAGCACCGATTCCACTTGCAGAGGATGAAATTGAGCAGGAAATCTTCAAGAAATTTAAAATGAAGGGTTTA
TTGCTTGAAGATGTGGAAGCAGTAAAGCTAATGGATCAAACGCTTGATTCAGGTAGATCGCAAGTCATTCAAGCCGGTTT
GAAAAAGGATGGGTCTTTCCGTTCTGATTCGGCAGTTTTAAGTGAGGATCATTTCCATATACTCACACAACACGTTCGGC
GCACATTTGAAGAAGCAGGCGAAAGAATTACAAATGGAGAGGTCGCAATTAATCCATATAAATTAAAGGATCAAACACCT
TGCCGCTTTTGTTCATTCAAGTCTATTTGCCAATTCGATGAATCAATAGAAGATAATGATTTTAGGGTGCTCACCTCTGA
AAAGGATGATGTTGTGATAGAACGGATCAAAAAAGAAGGGGATCAGTATGCAAATACCAAAACCGAATAA

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

66.322

99.316

0.659


Multiple sequence alignment