Detailed information    

insolico Bioinformatically predicted

Overview


Name   addA   Type   Machinery gene
Locus tag   BV11031_RS12805 Genome accession   NZ_CP026362
Coordinates   2369680..2373384 (-) Length   1234 a.a.
NCBI ID   WP_010329299.1    Uniprot ID   -
Organism   Bacillus vallismortis strain DSM 11031     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 2364680..2378384
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  BV11031_RS12790 (BV11031_12770) - 2364726..2365028 (-) 303 WP_129550771.1 HNH endonuclease -
  BV11031_RS12795 (BV11031_12775) sbcC 2365042..2368434 (-) 3393 WP_129550772.1 exonuclease subunit SbcC -
  BV11031_RS12800 (BV11031_12780) sbcD 2368431..2369606 (-) 1176 WP_010329300.1 exonuclease subunit SbcD -
  BV11031_RS12805 (BV11031_12785) addA 2369680..2373384 (-) 3705 WP_010329299.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  BV11031_RS12810 (BV11031_12790) addB 2373371..2376871 (-) 3501 WP_129550773.1 helicase-exonuclease AddAB subunit AddB Machinery gene

Sequence


Protein


Download         Length: 1234 a.a.        Molecular weight: 141605.86 Da        Isoelectric Point: 5.0227

>NTDB_id=268840 BV11031_RS12805 WP_010329299.1 2369680..2373384(-) (addA) [Bacillus vallismortis strain DSM 11031]
MNIPKPADSTWTDDQWNAIVSTGQDILVAAAAGSGKTAVLVERMIRKITAEENPIDVDRLLVVTFTNASAAEMKHRIADA
LEKELVNRPGSLHIRRQLSLLNRASISTLHSFCLQVLKKYYYLIDLDPGFRIADQTEGELLGDEVLDELFEDEYAKGEKA
FFELVDRYTTDRHDLDLQFLVKQVYEYSRSHPNPEAWLESFVHLYDVSEKSAIEELPFYQYIKEDIAMVLNGAKEKLQRA
LELTKAPGGPAPRADNFLDDLAQIDELIQHQDDFNELYKRVPAVSFKRAKAVKGDEFDPALLEEATDLRNGAKKLLEKLK
TDYFTRSPEQHLKSLAEMKPVIETLIRLVTDFGKRFEAAKQEKSIIDFSDLEHYCLSILTAEDDKGEQKPSEAARFYQEQ
FHEVLVDEYQDTNLVQESILQLVTSGPEETGNLFMVGDVKQSIYRFRLAEPLLFLSKYKRFTESGEGTGRKIDLNKNFRS
RTDILDSTNFLFKQLMGGKIGEVDYDEQAELKLGAAYPDNDETETELLLIDNAEETDANEEAEELETVQFEAKAIAKEIR
KLISSPFKVYDGKTKTHRNIQYRDIVILLRSMPWAPQIMDELRAQGIPVYANLTSGYYDAVEVAVALSVLKVIDNPYQDI
PLASVLRSPIVGADENELSLIRLENKKAPYYEAMKDYLAAGDRNDELYQKLQTFYTHLQKWRAFSKNHSVSELIWEVYRD
TKYMDYIGGMPGGKQRQANLRVLYDRARQYESTAFRGLFRFLRFIERMQERGDDLGTARALSEQEDVVRLMTIHSSKGLE
FPVVFAAGLGRNFNMMDLNKSYLLDKELGFGTKYIHPQLRITYPTLPLIAMKKKMRRELLSEELRVLYVALTRAKEKLFL
IGSCKDHQKQVAKWQASASQTDWLLPEFDRYQAKTYLDFIGPALARHKDVEDLAENVMAAPADISSHPARFAVRMIHSYD
LLDDDLEERMEEKSERLEAIRRGEPVPGSFTFDEKAREQLSWTYPHHEVTHIRTKQSVSEIKRKREYEDEYSGRAPVKPA
DGSMLYRRPAFMMKKGLTAAEKGTAMHTVMQHIPLTHVPTVEEAEQTVHKLFEKELLTEEQKAAIDIEEIVQFFHTEIGG
QLIDAKWKDREVPFSLALPAKEIYPDAQEADEPLLVQGIIDCFYETENGLYLLDYKSDRIEGKFQHGFEGAAPILKKRYE
TQIQLYTKAVEQIANTNVKGCALYFFDGGHILTL

Nucleotide


Download         Length: 3705 bp        

>NTDB_id=268840 BV11031_RS12805 WP_010329299.1 2369680..2373384(-) (addA) [Bacillus vallismortis strain DSM 11031]
ATGAACATTCCTAAACCGGCAGACAGCACTTGGACAGATGACCAATGGAATGCCATTGTTTCAACGGGCCAGGATATTCT
CGTGGCAGCGGCGGCGGGCTCCGGAAAAACCGCTGTGCTCGTCGAACGAATGATCCGGAAGATCACCGCGGAGGAAAACC
CGATTGATGTGGACCGGCTTCTCGTTGTGACGTTTACAAATGCCTCAGCGGCAGAGATGAAACACCGGATTGCGGATGCC
TTGGAAAAAGAGCTTGTCAACCGGCCAGGCTCGCTGCATATCAGACGCCAGCTGTCTCTTTTAAACAGGGCCAGCATTTC
GACACTGCATTCCTTTTGCCTGCAAGTGCTGAAGAAATATTACTACTTGATCGATCTTGATCCGGGCTTTCGGATTGCTG
ATCAAACAGAAGGCGAACTTTTGGGGGATGAAGTGCTGGACGAGCTGTTTGAAGACGAATACGCAAAGGGCGAAAAAGCG
TTTTTTGAGCTTGTTGACCGCTACACGACAGACCGGCATGATCTGGACCTGCAATTTCTCGTCAAACAGGTGTACGAGTA
TTCCCGTTCCCACCCAAATCCGGAGGCATGGCTGGAAAGCTTTGTTCATTTGTATGATGTATCGGAAAAGAGCGCCATCG
AGGAGCTTCCGTTTTATCAATATATCAAAGAGGATATTGCGATGGTGCTTAACGGAGCGAAGGAGAAGCTCCAGCGCGCG
CTTGAGCTGACGAAAGCGCCGGGCGGTCCCGCGCCGCGCGCTGACAATTTTCTTGATGATCTCGCGCAGATTGATGAACT
GATTCAGCACCAGGATGATTTCAATGAGCTTTATAAGCGGGTGCCGGCAGTCTCCTTTAAGCGCGCGAAAGCGGTAAAAG
GGGACGAGTTTGATCCTGCGCTCCTTGAAGAAGCGACAGATTTGAGAAACGGTGCAAAAAAACTGCTTGAAAAGCTTAAA
ACCGACTACTTCACGAGAAGTCCTGAACAGCATTTGAAAAGCTTAGCCGAGATGAAGCCTGTCATTGAAACGCTCATACG
GCTTGTCACCGACTTTGGAAAACGGTTCGAAGCCGCGAAACAGGAAAAATCAATCATTGATTTTTCTGATTTAGAGCATT
ACTGTTTATCCATTTTGACAGCTGAGGATGATAAAGGTGAACAGAAGCCGAGCGAGGCAGCAAGATTTTATCAGGAGCAG
TTTCATGAGGTGCTCGTTGACGAATATCAAGATACCAACTTAGTGCAGGAATCGATCCTGCAGCTCGTCACAAGCGGACC
CGAGGAAACAGGCAACCTATTTATGGTAGGAGATGTCAAACAGTCGATTTATCGATTCAGGCTGGCGGAGCCGCTTCTTT
TCCTCTCCAAATACAAACGGTTTACAGAAAGCGGAGAAGGCACGGGCCGGAAAATCGACTTGAATAAAAATTTCCGAAGC
CGGACTGATATTTTAGACAGCACAAACTTTTTATTTAAACAGCTGATGGGCGGCAAAATCGGTGAGGTTGATTATGATGA
GCAGGCTGAACTGAAGCTTGGCGCGGCGTATCCGGACAATGATGAGACGGAAACGGAGCTGCTGCTGATTGACAACGCCG
AAGAGACGGATGCAAACGAGGAAGCGGAAGAGCTGGAAACGGTACAGTTTGAAGCGAAAGCGATTGCCAAGGAAATTCGC
AAGCTGATTTCATCGCCATTTAAAGTGTATGACGGAAAAACGAAAACACACCGCAATATTCAGTACCGCGATATCGTGAT
TTTGCTTCGTTCCATGCCGTGGGCGCCGCAAATCATGGACGAGCTGAGGGCGCAGGGTATACCGGTTTACGCCAATTTAA
CGTCAGGTTATTATGATGCGGTCGAAGTCGCCGTCGCGCTTTCTGTGCTGAAGGTGATCGATAATCCGTATCAGGATATA
CCGCTGGCCTCTGTGTTGCGCTCACCTATTGTCGGGGCGGATGAAAACGAGCTGTCTTTGATCAGGCTTGAAAATAAAAA
AGCGCCGTACTATGAAGCGATGAAAGATTACTTGGCGGCCGGCGACCGGAACGACGAGCTTTATCAAAAGCTGCAAACAT
TCTACACTCACCTGCAAAAATGGCGCGCCTTTTCAAAAAACCACTCCGTATCCGAACTGATTTGGGAAGTGTACCGCGAC
ACGAAATACATGGATTATATCGGCGGGATGCCGGGCGGAAAACAGCGCCAGGCCAATTTGCGCGTTCTCTATGACCGGGC
GCGCCAATATGAATCGACGGCATTTCGCGGCCTGTTTCGTTTCCTGCGGTTTATCGAACGCATGCAGGAGCGGGGCGATG
ATCTTGGTACGGCCCGCGCGCTCAGCGAGCAGGAGGATGTTGTCCGCTTAATGACGATTCACAGCAGCAAAGGGCTCGAA
TTTCCCGTCGTGTTTGCAGCAGGTCTCGGCCGGAATTTCAACATGATGGACTTGAACAAATCGTACCTGCTGGACAAGGA
GCTCGGGTTTGGCACGAAGTATATTCATCCGCAACTGCGCATCACCTATCCAACGCTGCCACTCATTGCGATGAAGAAAA
AAATGCGCAGGGAGCTATTGTCAGAGGAATTGCGTGTTCTCTATGTTGCCTTAACGAGAGCGAAAGAAAAACTGTTTCTG
ATTGGCTCATGCAAGGATCATCAGAAACAGGTCGCAAAATGGCAGGCATCTGCCTCCCAAACGGACTGGCTTCTTCCGGA
ATTTGACCGTTATCAGGCAAAAACGTATTTAGATTTCATCGGTCCGGCTCTTGCCAGACACAAAGATGTAGAGGATTTGG
CTGAAAACGTTATGGCAGCGCCTGCCGACATATCAAGCCACCCGGCTCGTTTTGCCGTTCGTATGATCCATTCCTATGAT
TTGCTGGATGATGATCTGGAAGAAAGAATGGAAGAAAAAAGCGAGCGTTTAGAAGCGATACGCCGTGGTGAACCAGTTCC
TGGCTCGTTTACGTTTGATGAAAAAGCCCGTGAGCAGCTGAGCTGGACATATCCTCATCACGAGGTGACGCACATTCGGA
CAAAGCAGTCAGTTTCTGAGATCAAGAGAAAAAGAGAGTACGAGGATGAATACAGCGGCAGGGCCCCCGTTAAACCGGCT
GACGGAAGCATGCTGTACAGGCGGCCCGCTTTCATGATGAAAAAAGGCCTGACAGCAGCCGAAAAAGGGACGGCCATGCA
TACAGTGATGCAGCATATCCCGCTGACACATGTGCCGACAGTAGAGGAAGCGGAGCAAACGGTTCATAAGCTCTTTGAAA
AGGAGCTGCTCACTGAAGAACAAAAAGCCGCTATTGATATAGAAGAAATCGTGCAATTTTTCCATACAGAAATCGGCGGA
CAGCTGATCGACGCTAAATGGAAGGACCGGGAAGTGCCGTTTAGTTTGGCGCTTCCGGCCAAGGAAATCTACCCTGATGC
ACAGGAGGCGGATGAGCCGCTTTTGGTGCAGGGAATTATCGACTGTTTCTATGAAACTGAAAACGGCTTATATCTCTTGG
ACTATAAATCAGACCGGATTGAGGGCAAATTCCAGCACGGCTTTGAAGGGGCGGCCCCGATCTTGAAGAAACGATATGAA
ACGCAAATTCAGCTGTACACGAAGGCAGTTGAGCAAATTGCAAACACAAACGTAAAGGGATGTGCGCTTTATTTCTTTGA
CGGAGGTCACATTCTGACATTATAA


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
  addA Bacillus subtilis subsp. subtilis str. 168

95.219

100

0.952


Multiple sequence alignment