Detailed information    

insolico Bioinformatically predicted

Overview


Name   addB   Type   Machinery gene
Locus tag   OMK57_RS05710 Genome accession   NZ_CP110264
Coordinates   1165968..1169468 (+) Length   1166 a.a.
NCBI ID   WP_069486348.1    Uniprot ID   -
Organism   Bacillus halotolerans strain HMB20199     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 1160968..1174468
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  OMK57_RS05690 (OMK57_05690) - 1161821..1163023 (-) 1203 WP_069486346.1 MFS transporter -
  OMK57_RS05695 (OMK57_05695) - 1163139..1164869 (+) 1731 WP_069486347.1 ABC transporter substrate-binding protein -
  OMK57_RS05700 (OMK57_05700) - 1164903..1165217 (-) 315 WP_044156484.1 four-helix bundle copper-binding protein -
  OMK57_RS05705 (OMK57_05705) - 1165346..1165783 (-) 438 WP_044156482.1 ferritin family protein -
  OMK57_RS05710 (OMK57_05710) addB 1165968..1169468 (+) 3501 WP_069486348.1 helicase-exonuclease AddAB subunit AddB Machinery gene
  OMK57_RS05715 (OMK57_05715) addA 1169455..1173159 (+) 3705 WP_069486349.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  OMK57_RS05720 (OMK57_05720) sbcD 1173231..1174409 (+) 1179 WP_044156478.1 exonuclease subunit SbcD -

Sequence


Protein


Download         Length: 1166 a.a.        Molecular weight: 134728.76 Da        Isoelectric Point: 5.4755

>NTDB_id=753544 OMK57_RS05710 WP_069486348.1 1165968..1169468(+) (addB) [Bacillus halotolerans strain HMB20199]
MGAEFLVGRSGSGKTKLIIDSIQDELRRAPFGKPIIFLVPDQMTFLMEYELAKTPDTGGMIRAQVFSFSRLAWRVLQHTG
GMSRPFLTSTGVQMLLRKLIEEHKQEFKVYQKASDKSGFTAQVERMLTEFKRYCLEPEDIRRMADSGTASEYRGERVLSE
KLHDLSILYQQMEKSLEDQYLHSEDYLTLLAEHIPQAEDLKGAHVYVDGFYQFTPQEFRVLEQLMLQAEHITFSLTADKP
SHEGEPQELDLFRMTGKTYYRLHQAAKELNLDITYKELDESKRHKRAPELAHLEAQYEARPVIPFAEKQEAFTVMQAANR
RAELEGIAREIHSLVREKGYRYKDMAILARQPEDYKDMVKEVFADYEIPYFIDGKTSMLNHPLVEFIRSSLDVLKGNWRY
EAVFRCVKTELLFPLNQPKAKVREQVDQLENYCIAYGIKGDRWTKGDRFHYRRFVSLDDEFAQTDQEIEMENMLNDTRDW
IVPPLFQLQKRMKKAKTVQEKAEVLYRYLEETDVPLKLDQERQRAEEDGRIIEAQQHQQAWDAVIQLLEEFVEMMGEDDI
SLDLFQQMMETGAESLTFSLIPPALDQVFVGNMDLSRIYGTSCTFVIGANDGVLPARPDENGVLSDDDREWLKTIGIELS
SGGRERLLDEHFLIYMALSSPSDRLYVTHPIADAEGKTLLPSIVIKRLEELFPQHRERLLTNEPEQVSDEEQLMYLVNKS
VAQSYTASQLRLWTREYEISDVWWSAYNALMNEPDRLESKKLFSSLFFRNEVKQLERSVSRQLYGERIQGSVSRMETFNA
CPFSHFASHGLYLKERQFFKLEAPDIGQLFHSSLKLISDRLREHKIDWRDLTKEQCELFSYDAVERLAPKLQKEILLSSN
RHYYVKEKLQKIVTRVSGILSEHAKASGFVPIGLELGFGGKGPLPPLTFKLKNGCTMELVGRIDRVDKAESSKGLLLRIV
DYKSSDKGLDLAEVYYGLALQMLTYLDLSITHSLDWLGMKATPAGVLYFHIHDPMIQSNLPLGLDEIEQEIFKKFKMKGL
LLGDQEAIRLMDTTLQEGRSNIINAGLKKDGSLRSDSAAVGEKELELLTKHVRRTFQEAGEQITNGRVSIEPYKMKNKTP
CTYCAFKSVCQFDESLEENEYRLLKAEKDKTVLDWIKKEADGNEHS

Nucleotide


Download         Length: 3501 bp        

>NTDB_id=753544 OMK57_RS05710 WP_069486348.1 1165968..1169468(+) (addB) [Bacillus halotolerans strain HMB20199]
TTGGGAGCAGAGTTTTTAGTAGGCAGGTCCGGGAGTGGAAAAACGAAGCTGATCATCGACAGCATTCAAGATGAACTGCG
CCGGGCTCCATTCGGGAAACCGATCATTTTTCTAGTCCCGGATCAAATGACGTTTTTAATGGAATACGAGCTTGCTAAAA
CGCCTGATACGGGCGGCATGATTCGTGCTCAAGTCTTCAGCTTTTCACGACTGGCCTGGCGCGTCCTCCAGCATACGGGA
GGAATGAGCAGGCCGTTTCTTACGAGCACGGGCGTACAGATGCTCCTGCGGAAGCTCATTGAAGAGCACAAACAGGAGTT
TAAAGTCTATCAAAAAGCAAGTGATAAAAGCGGTTTTACCGCACAGGTAGAACGGATGCTGACTGAGTTTAAGAGATACT
GTCTGGAACCGGAAGATATTCGCCGGATGGCGGATAGCGGAACAGCTTCCGAGTATCGGGGGGAACGTGTTTTATCTGAA
AAGCTTCATGATTTATCGATCCTGTACCAGCAGATGGAAAAAAGCCTTGAGGATCAGTATCTTCATTCTGAGGATTATTT
GACACTATTGGCAGAGCATATCCCGCAGGCGGAAGATTTGAAAGGGGCACATGTCTATGTAGACGGCTTTTATCAGTTTA
CACCGCAGGAATTCAGGGTGTTAGAGCAGCTTATGCTTCAGGCAGAGCATATCACGTTTTCACTCACAGCGGACAAGCCG
TCACATGAGGGGGAGCCGCAGGAACTTGATTTGTTCAGAATGACGGGAAAAACGTATTATCGCTTGCACCAGGCGGCAAA
GGAACTGAATCTGGACATCACCTATAAAGAGCTTGATGAATCAAAGCGGCACAAACGCGCACCGGAATTGGCCCATTTAG
AAGCACAGTATGAAGCGCGTCCGGTTATTCCGTTTGCTGAGAAACAAGAGGCTTTTACTGTGATGCAGGCCGCTAACAGA
CGAGCAGAGCTGGAAGGTATTGCCCGGGAAATCCACAGTCTTGTCAGAGAGAAGGGCTACCGTTACAAGGATATGGCGAT
TCTAGCGCGTCAGCCGGAAGACTATAAGGATATGGTCAAGGAAGTATTTGCAGATTACGAGATTCCTTATTTTATTGACG
GGAAAACTTCTATGCTGAACCACCCGTTAGTAGAATTTATCCGGTCAAGCCTAGACGTATTAAAGGGAAATTGGCGTTAT
GAAGCGGTGTTCCGCTGCGTGAAAACCGAACTGTTATTCCCGCTTAACCAGCCGAAGGCCAAGGTAAGAGAGCAGGTTGA
TCAGCTGGAGAATTACTGTATCGCTTACGGGATCAAAGGCGATCGCTGGACAAAGGGCGATCGTTTCCATTACAGACGTT
TTGTGTCGTTAGATGATGAATTTGCGCAGACCGATCAAGAAATCGAAATGGAAAACATGCTGAATGACACGCGCGATTGG
ATTGTTCCGCCGCTGTTCCAGCTGCAGAAACGAATGAAAAAAGCAAAAACGGTTCAAGAGAAGGCGGAGGTGCTTTACCG
TTATTTAGAAGAGACGGATGTGCCGCTGAAGCTGGATCAGGAAAGACAGCGGGCTGAGGAAGACGGCAGAATCATTGAAG
CACAGCAGCACCAGCAGGCGTGGGATGCAGTCATTCAGCTGCTTGAGGAGTTTGTGGAAATGATGGGCGAAGATGACATT
TCTCTCGATTTGTTTCAGCAAATGATGGAGACCGGTGCAGAGTCGCTGACATTCTCTCTCATCCCTCCGGCGCTTGATCA
GGTGTTTGTCGGCAATATGGATTTGTCCAGAATATACGGCACCTCATGCACCTTTGTGATCGGGGCAAACGACGGCGTCC
TGCCGGCTCGCCCTGACGAAAACGGGGTGCTGTCGGATGATGATCGTGAGTGGCTGAAGACGATAGGTATTGAGCTTTCC
TCCGGCGGGCGGGAGCGTCTGCTTGATGAGCATTTCCTCATCTATATGGCGCTTTCAAGCCCTTCTGACCGCCTTTATGT
GACGCATCCGATTGCTGATGCGGAAGGGAAAACGCTTTTGCCGTCGATTGTAATCAAGCGGCTGGAAGAACTGTTTCCGC
AGCATCGTGAGCGTCTATTGACAAATGAACCGGAGCAGGTCAGCGATGAGGAACAGCTTATGTACCTTGTCAATAAAAGC
GTGGCACAATCATATACCGCTAGCCAGCTCAGATTATGGACGAGGGAATATGAGATCAGTGATGTCTGGTGGAGCGCGTA
CAATGCGCTGATGAATGAACCTGACAGGCTGGAGTCGAAAAAGCTTTTCTCTAGCCTGTTTTTCCGAAATGAAGTCAAGC
AGCTTGAACGCTCTGTATCGAGACAGCTCTATGGGGAACGCATTCAAGGGAGCGTGTCGAGGATGGAAACCTTTAACGCT
TGTCCGTTCTCCCATTTTGCGTCTCACGGGCTGTATCTGAAGGAACGTCAATTTTTTAAGCTTGAAGCACCGGATATCGG
GCAGCTCTTTCATTCGAGTTTAAAACTGATTTCAGACCGGCTGCGCGAGCACAAAATAGATTGGCGCGACCTAACGAAGG
AGCAGTGCGAGCTGTTTTCTTATGATGCGGTCGAGCGGCTGGCGCCGAAACTGCAAAAAGAAATTCTGCTCAGTTCAAAC
AGACATTATTACGTGAAGGAAAAACTGCAAAAAATTGTGACACGCGTGTCCGGCATTTTAAGCGAGCATGCGAAAGCGAG
CGGATTCGTGCCGATCGGCCTTGAATTGGGCTTTGGCGGAAAGGGCCCGCTCCCGCCGCTTACCTTTAAGCTGAAAAACG
GCTGTACGATGGAGCTCGTCGGGCGGATTGACCGCGTGGATAAAGCGGAAAGCTCTAAAGGCCTGCTCCTCCGAATTGTC
GACTATAAATCCAGCGATAAAGGCCTTGACTTGGCGGAAGTGTATTACGGACTTGCGCTGCAAATGCTGACGTATCTGGA
TCTATCGATTACACATTCGTTAGACTGGCTAGGAATGAAAGCCACGCCGGCCGGAGTGCTGTATTTCCATATTCATGACC
CGATGATACAATCGAATCTTCCGCTCGGACTTGATGAAATTGAACAGGAAATTTTTAAGAAATTTAAGATGAAGGGCCTC
CTCCTCGGTGATCAGGAAGCGATTCGCCTCATGGATACAACCCTTCAAGAAGGAAGATCAAATATCATCAATGCGGGCCT
GAAGAAAGACGGCTCACTCAGATCGGATTCAGCGGCAGTCGGTGAAAAAGAACTTGAGCTGTTGACGAAGCATGTGCGCC
GCACCTTCCAAGAAGCAGGCGAGCAAATCACTAACGGGCGCGTATCCATTGAGCCGTATAAAATGAAGAACAAGACGCCT
TGCACATACTGTGCGTTCAAATCAGTATGCCAATTTGATGAATCATTAGAAGAAAACGAGTATCGTCTGTTAAAGGCCGA
AAAGGACAAGACGGTACTTGATTGGATAAAGAAGGAGGCTGATGGCAATGAACATTCCTAA


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

93.997

100

0.94