Detailed information    

insolico Bioinformatically predicted

Overview


Name   addB   Type   Machinery gene
Locus tag   S101395_RS18285 Genome accession   NZ_CP021920
Coordinates   3471412..3474912 (-) Length   1166 a.a.
NCBI ID   WP_006636759.1    Uniprot ID   M5PF09
Organism   Bacillus sonorensis strain SRCM101395     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 3466412..3479912
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  S101395_RS18275 (S101395_03679) sbcD 3466482..3467666 (-) 1185 WP_006636761.1 exonuclease subunit SbcD -
  S101395_RS18280 (S101395_03680) addA 3467736..3471425 (-) 3690 WP_006636760.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  S101395_RS18285 (S101395_03681) addB 3471412..3474912 (-) 3501 WP_006636759.1 helicase-exonuclease AddAB subunit AddB Machinery gene
  S101395_RS18290 (S101395_03682) modB 3475022..3475678 (-) 657 WP_006636758.1 molybdate ABC transporter permease subunit -
  S101395_RS18295 (S101395_03683) modA 3475687..3476478 (-) 792 WP_006636757.1 molybdate ABC transporter substrate-binding protein -
  S101395_RS18300 (S101395_03684) - 3476662..3477102 (+) 441 WP_006636756.1 ferritin-like domain-containing protein -
  S101395_RS18305 (S101395_03685) - 3477217..3477909 (+) 693 WP_006636755.1 response regulator transcription factor -
  S101395_RS18310 (S101395_03686) - 3477890..3479257 (+) 1368 WP_006636754.1 sensor histidine kinase -

Sequence


Protein


Download         Length: 1166 a.a.        Molecular weight: 134004.87 Da        Isoelectric Point: 5.5038

>NTDB_id=234911 S101395_RS18285 WP_006636759.1 3471412..3474912(-) (addB) [Bacillus sonorensis strain SRCM101395]
MGAVFLSGRSGSGKTTFILDDIREKLRHDPLGKPIIFLVPDQMTFLMEYELSKTPDLGGTIRAQVYSFSRLAWRILQRTG
GMNRPFLTGTGIQMLLRKLIEEHKDEFKVYQNASDKSGFTEQVERMLTEFKRHCLTPDSIREIMQGSGTSEYEDERILSD
KLHDLYILYSKMEESLKDQYVQSEDYLTLLAEQIPHAEEIREASIYVDGFHQFTPQEMLVLEQLMAHAPEITFSLTADRP
FTGNIPHELHLFRMTGKAYFDLHQKARELGLDVSEIRLEEAKRHKHAPELQHVERYFDERPANAYTGKIESFRIMQAANR
RTEIEGIAREIRSLVRSGAFRLKDIAVIARNLEDYQDAIKEVFTDYGLAFFIDGKESMRNHPLIELIRSTLDIIKGNWRY
EAVFRCIKTELLFPGDKPKERVREQVDQLENYCIAYGIQGNRWTSSEPFVYRRYTSLDEDFAQTDREIETENMLNELKDW
IVPPVHRLQKRLKKAGSVREMAEAVYLYLEEADIPLKLEEERRIAEESGRIEESRQHEQVWDAVIQLLDEFVEMMGDERI
SFSLFQQMIETGLESLTFSLIPPALDQVFIGNMDLSRMYGIKCTFLIGANDGILPARPADDGVLTDDDREWLKRNGAALA
ATGREQLLDENYLIYMALSSPSHQLYVSYPIADAEGKTLLPSTIVKRLNELFPDHAEKMLANEPEQLDDEAQLEFLVNKS
TALSYLAGQLGIWSRQYAISDVWWSTYNFLMDEPDRRFSQNVLSSLFFRNKVHTLNQRVSRELYGEHIQGSVSRMEMYKA
CPFSHFASHGLKLKERQFFKLEAPDIGQLFHSALKLISDRLHELKLDWRDLTKEQCDALSSDAVERLAPKLQKEILLSSN
RHHYVKQKLQKIIARVSGILSEHAKASGFAPVGLELGFGGKGPLPPMRFTLKNGCTMELVGRIDRVDKAESSKGLLLRIV
DYKSSDKGLDLAEVYYGLALQMLTYLDLSITHSADWLGMKASPAGVLYFHVHDPMIQASAPLGLDEIEKEIFKKFKMKGL
LLGDQEAIKLMDTTLEQGRSDIISAGLKKDGSLRSDSAVVREEDFHLLRHHIRRTFQKAGEEITDGKVAIEPYKLKDRTP
CTFCSFKSFCQFDESLEENEYRVLKPEKDNVILDWLKKEDEANGDG

Nucleotide


Download         Length: 3501 bp        

>NTDB_id=234911 S101395_RS18285 WP_006636759.1 3471412..3474912(-) (addB) [Bacillus sonorensis strain SRCM101395]
GTGGGAGCAGTTTTTTTATCAGGCAGGTCCGGGAGTGGGAAAACGACCTTTATCTTGGATGACATCAGAGAAAAGCTTCG
CCATGACCCGCTCGGGAAACCGATCATTTTTCTAGTCCCGGATCAGATGACGTTTTTAATGGAATATGAGCTTAGTAAAA
CTCCTGATTTGGGCGGGACGATCCGCGCCCAGGTTTACAGTTTTTCAAGGCTTGCCTGGCGAATCCTCCAGCGCACGGGA
GGCATGAACCGTCCGTTTCTGACGGGAACCGGCATTCAAATGCTGCTTCGCAAATTGATCGAAGAGCATAAGGATGAGTT
TAAAGTGTATCAAAACGCGAGTGACAAAAGCGGTTTTACGGAGCAGGTTGAACGAATGCTGACCGAGTTTAAACGGCACT
GCCTGACGCCAGATAGCATTCGCGAGATTATGCAGGGAAGCGGGACGTCGGAATATGAGGATGAACGGATTCTTTCCGAC
AAGCTCCACGACCTCTATATTTTGTACAGCAAGATGGAAGAAAGCCTCAAAGATCAATATGTTCAGTCAGAAGATTATTT
GACACTCTTGGCGGAACAGATACCGCATGCCGAAGAGATCAGGGAAGCTTCCATTTATGTGGACGGTTTTCACCAATTCA
CCCCGCAGGAGATGCTCGTCCTTGAACAGCTGATGGCACATGCGCCGGAGATTACATTTTCTTTGACGGCGGATCGGCCC
TTTACAGGAAACATACCGCATGAATTGCATCTTTTCCGGATGACGGGAAAGGCATATTTTGATCTTCACCAAAAAGCACG
GGAGCTCGGCCTTGATGTGTCAGAAATCCGCCTGGAAGAAGCGAAACGGCATAAGCACGCGCCGGAGCTGCAACATGTGG
AGCGTTATTTTGATGAAAGGCCGGCAAACGCGTACACAGGAAAAATAGAGTCTTTCCGCATCATGCAGGCGGCTAACAGA
AGAACCGAGATTGAAGGGATCGCCAGGGAAATCCGCTCCCTGGTCCGCAGCGGCGCGTTCAGGCTGAAAGATATCGCGGT
GATCGCCCGCAATCTTGAAGATTATCAAGACGCGATCAAAGAAGTGTTTACAGATTACGGACTTGCGTTTTTCATAGACG
GCAAAGAGTCCATGCGGAACCATCCGCTGATCGAACTGATTCGTTCAACACTTGATATCATTAAAGGAAACTGGAGATAT
GAAGCGGTATTCCGCTGCATCAAAACAGAGCTTTTATTCCCCGGGGACAAGCCGAAGGAACGGGTGCGGGAACAGGTAGA
CCAGCTAGAAAACTATTGCATTGCTTATGGTATTCAAGGGAACAGGTGGACAAGCAGTGAACCGTTTGTTTACAGAAGAT
ATACTTCATTGGATGAGGACTTTGCACAGACCGACCGGGAAATTGAGACTGAGAACATGCTCAATGAATTAAAGGACTGG
ATTGTGCCGCCTGTTCACCGCCTGCAAAAACGCCTGAAAAAAGCGGGATCGGTGAGGGAAATGGCTGAAGCCGTTTATCT
CTATCTTGAAGAGGCCGATATTCCGCTGAAGCTTGAAGAGGAAAGGCGGATTGCCGAAGAAAGCGGCCGGATCGAGGAAT
CAAGACAGCATGAACAGGTCTGGGACGCCGTCATTCAATTATTGGACGAGTTTGTGGAAATGATGGGGGACGAGCGCATA
TCGTTTTCCTTGTTTCAGCAAATGATCGAAACCGGTTTGGAGTCGTTAACATTCTCGCTGATTCCGCCTGCGCTTGATCA
GGTGTTTATCGGCAATATGGATTTATCCAGAATGTACGGTATCAAATGCACGTTTCTCATCGGGGCAAACGACGGCATCC
TGCCGGCAAGGCCGGCCGATGACGGGGTTTTGACAGATGACGACAGGGAGTGGCTGAAAAGAAACGGGGCGGCGCTTGCG
GCAACGGGAAGAGAACAGCTGCTTGATGAAAATTATTTGATCTACATGGCGCTCTCAAGCCCTTCTCATCAGCTCTATGT
CTCATATCCGATCGCAGATGCTGAAGGGAAAACGCTGCTTCCCTCAACTATTGTGAAGCGGTTAAACGAACTGTTTCCGG
ATCATGCCGAGAAGATGCTCGCCAACGAACCGGAACAGCTGGATGATGAGGCACAGCTTGAATTTCTCGTCAATAAAAGC
ACTGCTTTAAGCTATTTGGCGGGGCAGCTCGGGATCTGGTCGAGACAGTACGCGATCAGCGATGTATGGTGGAGTACATA
CAACTTTTTGATGGATGAGCCTGATCGGCGATTTTCACAAAATGTCCTGTCGAGCTTGTTTTTCCGAAACAAAGTTCACA
CTCTCAATCAGCGGGTAAGCCGGGAACTGTACGGGGAGCACATCCAGGGGAGCGTGTCGCGGATGGAAATGTACAAAGCC
TGTCCGTTTTCCCACTTTGCTTCCCATGGCTTAAAGCTGAAGGAACGCCAATTTTTCAAACTTGAAGCTCCGGATATCGG
CCAGCTGTTTCATTCAGCGCTGAAGCTGATCTCAGACCGTCTTCATGAACTGAAGCTCGATTGGCGCGACTTGACGAAAG
AACAATGTGATGCACTATCAAGCGATGCGGTAGAACGGCTCGCGCCGAAACTGCAAAAAGAGATTTTGCTCAGCTCAAAC
CGTCACCACTATGTGAAGCAAAAGCTGCAAAAAATTATCGCGCGGGTATCCGGCATTTTAAGCGAGCATGCGAAAGCGAG
CGGGTTTGCTCCCGTCGGTCTCGAGCTTGGCTTCGGCGGAAAAGGTCCGCTTCCTCCGATGCGGTTTACTCTTAAAAACG
GCTGCACAATGGAGCTTGTCGGCCGGATTGACCGGGTGGATAAAGCCGAGAGCTCAAAAGGGCTGCTGCTGCGAATCGTG
GATTACAAATCAAGCGATAAAGGCCTTGATCTGGCTGAAGTGTATTACGGCCTTGCGCTGCAAATGCTGACATATCTTGA
TTTGTCCATCACCCATTCGGCGGATTGGCTCGGGATGAAGGCCTCGCCGGCCGGAGTTCTTTATTTTCATGTGCACGATC
CGATGATTCAGGCCTCCGCACCGCTCGGCCTGGATGAGATTGAAAAAGAAATATTTAAGAAATTTAAGATGAAAGGGCTT
CTGCTGGGAGACCAGGAAGCCATCAAGCTGATGGACACCACCCTTGAACAGGGCAGGTCCGACATCATCAGCGCAGGCTT
GAAAAAAGACGGTTCGCTCCGTTCGGATTCTGCGGTCGTCAGAGAAGAAGATTTTCACTTATTAAGACACCACATCCGCC
GGACGTTTCAAAAAGCCGGCGAGGAGATTACAGACGGTAAAGTGGCGATCGAGCCTTATAAATTAAAAGACAGGACCCCG
TGCACATTTTGTTCTTTCAAATCATTCTGCCAGTTTGACGAATCGCTTGAGGAGAATGAGTACCGGGTATTGAAGCCGGA
AAAAGACAATGTGATATTGGATTGGCTGAAAAAGGAGGATGAGGCAAATGGAGATGGCTAA

Domains


Predicted by InterproScan.

(790-1131)


Secondary structure


Protein secondary structures were predicted by S4PRED and visualized by seqviz.



3D structure


Source ID Structure
  AlphaFold DB M5PF09

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

73.947

99.743

0.738


Multiple sequence alignment