Detailed information    

insolico Bioinformatically predicted

Overview


Name   addB   Type   Machinery gene
Locus tag   AB1F75_RS15145 Genome accession   NZ_CP160396
Coordinates   2935614..2939114 (-) Length   1166 a.a.
NCBI ID   WP_044052572.1    Uniprot ID   -
Organism   Bacillus subtilis subsp. subtilis strain BSP1     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 2930614..2944114
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  AB1F75_RS15135 (AB1F75_15135) sbcD 2930682..2931857 (-) 1176 WP_015252408.1 exonuclease subunit SbcD -
  AB1F75_RS15140 (AB1F75_15140) addA 2931929..2935627 (-) 3699 WP_015252409.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  AB1F75_RS15145 (AB1F75_15145) addB 2935614..2939114 (-) 3501 WP_044052572.1 helicase-exonuclease AddAB subunit AddB Machinery gene
  AB1F75_RS15150 (AB1F75_15150) yhjR 2939298..2939735 (+) 438 WP_003245806.1 ferritin family protein -
  AB1F75_RS15155 (AB1F75_15155) cusC 2939853..2940179 (+) 327 WP_015252411.1 four-helix bundle copper-binding protein -
  AB1F75_RS15160 (AB1F75_15160) yhjP 2940209..2941936 (-) 1728 WP_015252412.1 SgrR family transcriptional regulator -
  AB1F75_RS15165 (AB1F75_15165) yhjO 2942050..2943255 (+) 1206 WP_015252413.1 MFS transporter -

Sequence


Protein


Download         Length: 1166 a.a.        Molecular weight: 134558.57 Da        Isoelectric Point: 5.5764

>NTDB_id=1020830 AB1F75_RS15145 WP_044052572.1 2935614..2939114(-) (addB) [Bacillus subtilis subsp. subtilis strain BSP1]
MGAEFLVGRSGSGKTKLIINSIQDELRRAPFGKPIIFLVPDQMTFLMEYELAKTPDMGGMIRAQVFSFSRLAWRVLQHTG
GMSRPFLTSTGVQMLLRKLIEEHKQEFKVYQKASDKSGFTAQVERMLTEFKRYCLEPEDIRRMAESGTASEYRGERVLSE
KLHDLSILYQQMEKSLADQYLHSEDYLTLLAEHIPLAEDIKGAHIYVDGFYQFTPQEFRVLEQLMVHAEHITFSLTADKP
SYEREPHELELFRMTGKTYYRLHQKAKELNLDITYKELSGTERHTKTPELAHLEAQYEARPAVPYAEKQEALTVMQAANR
RAELEGIAREIHALVREKGYRYKDVAILARQPEDYKDMVKEVFADYEIPYFIDGKASMLNHPLIEFIRSSLDVLKGNWRY
EAVFRCVKTELLFPLNEPKAKVREQVDQLENYCIAYGIKGDRWTKGDRFQYRRFVSLDDDFAQTDQEIEMENMLNDTRDW
IVPPLFQLQKRMKKAKTVQEKAEALYRYLEETDVPLKLDQERQRAEDDGRIIEAQQHQQAWDAVIQLLEEFVEMMGDDEI
SLDLFQQMIEAGAESLTFSLIPPALDQVFVGNMDLSRMYGTSCTFVLGANDGVLPARPDENGVLSDDDREWLKTIGVELS
SGGRERLLDEHFLIYMAFSSPSDRLYVSYPIADAEGKTLLPSMIVKRLGELFPHHKERLLTNEPEQVSDEEQLMYVVNKS
VAQSFTASQLRLWTREYDISDVWWSTYNVLMSEQDRLQSKKLFSSLFFRNEVKQLERSVSRQLYGERIQGSVSRMETFNA
CPFSHFASHGLHLKERQFFKLEAPDIGQLFHSSLKLISDRLREQKLDWRDLTKEQCELFSYDAVERLAPKLQKEILLSSN
RHYYVKEKLQKIVTRVSGILSEHAKASGFVPIGLELGFGGKGPLPPLTFQLKNGCTMELVGRIDRVDKAESSKGLLLRIV
DYKSSDKGLDLAEVYYGLALQMLTYLDLSITHSADWLGMRATPAGVLYFHIHDPMIQSNLPLGLDEIEQEIFKKFKMKGL
LLGDQEVVRLMDTTLQEGRSNIINAGLKKDGSLRSDSAAVGEKEFDLLTKHVRRTFQEAGEQITDGRVSIEPYKMKNKTP
CTYCAFKSVCQFDESLEENEYRPLKAEKDKTILEWIKKEADGNEHS

Nucleotide


Download         Length: 3501 bp        

>NTDB_id=1020830 AB1F75_RS15145 WP_044052572.1 2935614..2939114(-) (addB) [Bacillus subtilis subsp. subtilis strain BSP1]
TTGGGAGCAGAGTTTTTAGTAGGCAGGTCCGGGAGTGGAAAAACGAAGCTGATCATCAACAGCATTCAGGATGAATTGCG
CCGGGCTCCATTCGGGAAGCCGATCATTTTTCTAGTCCCGGATCAAATGACGTTTTTAATGGAATACGAGCTTGCTAAAA
CGCCAGATATGGGCGGGATGATACGCGCTCAAGTGTTCAGTTTTTCACGATTGGCCTGGCGCGTCCTCCAGCATACGGGA
GGAATGAGCAGGCCGTTTCTGACGAGCACCGGCGTACAAATGCTCCTGCGGAAGCTCATTGAGGAGCATAAACAGGAGTT
CAAAGTCTATCAAAAAGCGAGTGACAAAAGCGGGTTTACCGCACAGGTTGAGCGGATGCTGACAGAGTTTAAGCGCTATT
GTCTGGAACCGGAGGATATCCGCCGGATGGCGGAAAGCGGAACGGCTTCCGAGTATCGCGGAGAACGTGTTTTATCTGAA
AAGCTCCATGACTTATCAATTCTGTATCAGCAAATGGAAAAAAGCCTCGCAGATCAATATCTTCACTCTGAGGATTATTT
GACATTGCTGGCAGAGCATATCCCGCTTGCGGAAGATATAAAAGGCGCCCATATCTATGTGGATGGCTTTTATCAGTTTA
CCCCGCAGGAATTCAGGGTGTTGGAGCAGCTTATGGTTCATGCGGAGCATATCACGTTTTCGCTCACAGCGGACAAGCCG
TCATATGAGCGGGAGCCGCATGAACTGGAATTGTTCAGAATGACGGGGAAAACCTATTACCGCCTGCATCAGAAGGCGAA
GGAACTGAATTTGGACATTACGTATAAAGAGCTGAGCGGGACTGAGCGGCATACAAAGACGCCGGAATTGGCGCATCTAG
AGGCACAGTATGAAGCGCGTCCGGCCGTTCCATACGCAGAAAAACAAGAAGCCCTTACTGTGATGCAGGCCGCAAACAGA
CGAGCTGAGCTGGAAGGCATTGCCCGGGAAATTCACGCCCTAGTCAGAGAGAAGGGATATCGCTATAAGGATGTAGCAAT
TCTTGCGCGCCAGCCGGAAGACTACAAGGATATGGTGAAGGAAGTTTTCGCAGATTACGAGATTCCTTATTTCATTGACG
GAAAAGCATCTATGCTGAACCATCCGTTAATTGAATTTATCCGGTCAAGCCTTGATGTTCTGAAAGGGAATTGGCGTTAT
GAAGCGGTGTTTCGCTGCGTGAAAACCGAACTGCTATTCCCGCTCAATGAACCGAAGGCCAAAGTGAGAGAACAGGTCGA
TCAGCTCGAAAATTACTGTATCGCCTATGGTATTAAAGGCGACCGCTGGACAAAGGGCGATCGGTTCCAATACAGGCGTT
TTGTGTCATTGGATGATGATTTTGCGCAGACTGATCAGGAAATCGAAATGGAAAACATGTTGAATGACACCCGCGATTGG
ATTGTTCCGCCGCTTTTTCAGCTTCAAAAACGCATGAAAAAAGCGAAGACGGTTCAAGAGAAGGCGGAGGCGCTCTATCG
TTATTTAGAAGAGACGGATGTGCCGCTGAAGCTGGATCAGGAAAGGCAGCGTGCTGAGGATGACGGCAGAATCATTGAAG
CGCAGCAGCATCAGCAGGCGTGGGACGCAGTCATTCAGCTGCTTGAGGAGTTTGTTGAAATGATGGGAGATGATGAGATT
TCTCTTGATTTGTTTCAGCAAATGATAGAAGCCGGCGCGGAGTCGCTTACGTTTTCTCTAATTCCGCCTGCGCTTGACCA
GGTGTTTGTCGGCAATATGGATTTGTCCAGAATGTATGGCACCTCCTGCACCTTTGTGCTCGGGGCAAACGACGGCGTTC
TGCCGGCACGCCCTGATGAAAACGGGGTCCTGTCGGATGATGACCGGGAATGGCTGAAAACGATTGGGGTTGAGCTATCC
TCAGGCGGACGGGAGCGTTTGCTTGATGAGCATTTCCTCATCTACATGGCGTTTTCAAGTCCGTCTGACCGGCTTTACGT
ATCGTATCCGATTGCTGATGCGGAAGGAAAAACGCTTTTGCCGTCGATGATCGTTAAGCGGCTGGGAGAACTGTTTCCGC
ATCATAAGGAGCGCCTGTTAACAAATGAACCTGAACAGGTCAGCGATGAGGAACAGCTGATGTATGTCGTGAATAAAAGC
GTGGCACAGTCCTTTACCGCGAGCCAGCTCAGGTTATGGACTCGGGAATACGACATCAGCGACGTCTGGTGGAGCACGTA
CAATGTGCTGATGAGTGAGCAGGACAGGCTGCAATCGAAAAAGCTGTTCTCAAGCCTGTTTTTCCGGAATGAAGTGAAGC
AGCTTGAACGCAGCGTGTCGAGACAGCTCTATGGTGAACGCATTCAGGGCAGTGTATCGAGAATGGAAACCTTTAACGCA
TGCCCGTTTTCCCATTTTGCGTCACACGGGCTGCATTTGAAGGAACGGCAATTCTTCAAGCTTGAAGCACCGGATATCGG
CCAGCTGTTTCATTCCAGCTTAAAGCTGATTTCGGACAGGCTGCGTGAGCAAAAGCTGGATTGGCGCGATTTAACGAAGG
AGCAGTGCGAGCTGTTTTCCTATGATGCGGTAGAGCGGCTGGCACCGAAACTGCAAAAGGAAATTCTGCTCAGCTCAAAC
CGGCATTATTATGTGAAGGAAAAACTGCAAAAAATTGTGACACGTGTGTCCGGCATTTTAAGCGAGCATGCGAAAGCGAG
CGGATTCGTACCGATCGGGCTTGAACTGGGCTTTGGAGGAAAAGGGCCGCTTCCGCCGCTGACCTTTCAACTGAAAAACG
GTTGTACGATGGAACTCGTCGGGCGAATTGACCGTGTTGATAAGGCTGAAAGCTCAAAAGGCCTGCTCCTCAGGATTGTC
GATTATAAATCAAGCGACAAAGGCCTTGACTTAGCGGAAGTATATTACGGATTGGCACTGCAAATGCTGACGTACCTTGA
TTTATCGATTACACATTCAGCTGACTGGCTCGGGATGAGGGCGACGCCTGCCGGAGTGCTGTATTTCCACATTCATGACC
CGATGATTCAATCTAATCTCCCGCTTGGGCTTGACGAGATTGAACAGGAGATCTTTAAGAAATTTAAAATGAAGGGCTTG
CTCCTCGGTGATCAGGAAGTGGTTCGCCTCATGGATACAACTCTTCAAGAGGGACGTTCAAATATCATAAACGCCGGCTT
GAAAAAAGACGGATCTCTCAGATCAGACTCGGCAGCAGTCGGTGAAAAGGAATTTGATCTTTTGACAAAGCATGTGCGCC
GCACCTTCCAGGAAGCGGGCGAACAAATCACCGACGGACGCGTATCCATTGAGCCGTACAAAATGAAGAACAAGACGCCG
TGCACATACTGTGCGTTCAAATCAGTATGCCAATTTGATGAATCACTGGAAGAAAACGAGTATCGCCCATTAAAGGCTGA
AAAGGACAAGACAATACTTGAGTGGATAAAAAAGGAGGCGGATGGCAATGAACATTCCTAA


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

99.828

100

0.998


Multiple sequence alignment