Detailed information    

insolico Bioinformatically predicted

Overview


Name   addA   Type   Machinery gene
Locus tag   QN218_RS12920 Genome accession   NZ_CP126534
Coordinates   2468951..2472655 (-) Length   1234 a.a.
NCBI ID   WP_060398328.1    Uniprot ID   -
Organism   Bacillus inaquosorum strain BSY82     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 2463951..2477655
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  QN218_RS12905 hlpB 2463999..2464301 (-) 303 WP_060398331.1 HNH nuclease-like protein HlpB -
  QN218_RS12910 sbcC 2464315..2467707 (-) 3393 WP_060398330.1 exonuclease subunit SbcC -
  QN218_RS12915 sbcD 2467704..2468879 (-) 1176 WP_060398329.1 exonuclease subunit SbcD -
  QN218_RS12920 addA 2468951..2472655 (-) 3705 WP_060398328.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  QN218_RS12925 addB 2472642..2476142 (-) 3501 WP_060398327.1 helicase-exonuclease AddAB subunit AddB Machinery gene
  QN218_RS12930 - 2476325..2476762 (+) 438 WP_044427329.1 ferritin family protein -
  QN218_RS12935 - 2476879..2477208 (+) 330 WP_060398326.1 four-helix bundle copper-binding protein -

Sequence


Protein


Download         Length: 1234 a.a.        Molecular weight: 141273.54 Da        Isoelectric Point: 5.0440

>NTDB_id=838574 QN218_RS12920 WP_060398328.1 2468951..2472655(-) (addA) [Bacillus inaquosorum strain BSY82]
MNIPKPADSTWTDDQWNAIVSTGQDILVAAAAGSGKTAVLVERMIRKITAEENPIDVDRLLVVTFTNASAAEMKHRIAYA
LEKELVKRPGSLHIRRQLSLLNRASISTLHSFCLQVLKKYYYLIDLDPGFRIADQTEGELLGDEVLDELFEDEYAKGEKA
FFELVDRYTTDRHDLDLQFLVKQVYEYSRSHPNPEAWLESFVHLYDVSEKSAIEELPFYQYVKEDIAMVLNGAKEKLQRA
LELTKAPGGPAPRADNFLDDLAQIDELIQHQDDFTELYKRVPAVSFKRAKAVKGDEFDPALLEEATDLRNGAKKLLEKLK
TDYFTRNPEQHLKSLADMKPVIETLIQLVISYGNRFEAAKQEKSIIDFSDLEHYCLSILTAENDKGEQEPSEAARFYQEQ
FHEVLVDEYQDTNLVQESILQLVTSGPEETGNLFMVGDVKQSIYRFRLAEPLLFLSKYKRFTESGEGTGRKIDLNKNFRS
RADILDSTNFLFKQLMGGKIGEVDYDEQAELKLGAAYPDNDETETELLLIDNSEETDAGEEAEELETVQFEAKAIAKEIR
KLISSPFKVYDGKTKTHRNIQYRDIVILLRSMPWAPQIMEELRAQGIPVYANLTSGYFEAVEVAIALSVLKVIDNPYQDI
PLASVLRSPIVGADENELSLIRLENTKAPYYEAMKDYLAAGDRNDELYQKLQTFYGHLQKWRAFSKNHSVSELIWEVYRD
TKYMDYVGGMPGGKQRQANLRVLYDRARQYESTAFRGLFRFLRFIERMQERGDDLGTARALSEQEDVVRLMTIHSSKGLE
FPVVFAAGLGRNFNMMDLNKSYLLDKELGFGTKFIHPQLRISYPTLPLIAMKKKMRRELLSEELRVLYVALTRAKEKLFL
IGSCKDHQKQLAKWQATASQTDWLLPEFDRYQAKTYLDFIGPALARHRDLEALAENGAGAHADISGHPARFAVQMIHSYD
LLDDDLEERLEEKSERLEAIRRGEPVPGPFAFDEKAREQLSWTYPHHEVTQIRTKQSVSEIKRKREYEDEYSGRAPVKPA
DGSILYRRPAFMMKKGLTAAEKGTAMHTVMQHIPLTHVPTIEEAEQTVHKLYEKELLTEEQKAAIDIEEIVQFFHTEIGG
RLIGAKWKDREVPFSLALPAKEIYPDAQEADEPLLVQGIIDCLYETEDGLYLLDYKSDRIEGKFQHGFEGAAPILKKRYE
TQIQLYTKAVEQIAKTQVKGCALYFFDGGHILTL

Nucleotide


Download         Length: 3705 bp        

>NTDB_id=838574 QN218_RS12920 WP_060398328.1 2468951..2472655(-) (addA) [Bacillus inaquosorum strain BSY82]
ATGAACATTCCTAAACCGGCAGACAGCACATGGACAGATGACCAATGGAATGCCATTGTTTCAACCGGCCAGGATATTCT
TGTGGCAGCGGCGGCGGGCTCCGGTAAAACCGCTGTGCTCGTTGAACGAATGATCCGGAAAATTACCGCAGAAGAAAACC
CGATTGATGTAGACCGGCTTCTCGTTGTGACATTTACAAACGCCTCAGCGGCAGAGATGAAACATCGGATCGCGTATGCC
CTGGAAAAAGAGCTTGTAAAGCGCCCCGGCTCGCTGCATATCAGACGCCAGCTGTCTCTTTTAAACCGGGCCAGCATTTC
GACACTTCATTCCTTTTGCCTGCAAGTGCTGAAGAAATATTACTACTTGATCGATCTTGATCCGGGCTTTCGGATTGCTG
ATCAGACAGAAGGCGAGCTGCTCGGGGATGAAGTGCTGGACGAGCTGTTTGAAGACGAATACGCGAAGGGTGAAAAGGCG
TTTTTTGAGCTTGTTGACCGCTACACGACAGATCGGCACGATTTGGATCTGCAATTTCTCGTCAAACAGGTGTACGAGTA
TTCCCGTTCTCACCCAAACCCGGAGGCATGGCTGGAAAGCTTTGTTCATTTATATGATGTATCGGAAAAGAGCGCAATCG
AGGAGCTTCCGTTTTATCAATATGTCAAAGAGGATATTGCGATGGTGCTTAACGGAGCGAAGGAGAAGCTGCAGCGCGCG
CTTGAACTGACGAAAGCGCCGGGCGGACCGGCGCCGCGCGCTGACAATTTTCTTGATGATCTTGCGCAGATTGATGAACT
GATTCAGCATCAGGACGATTTCACTGAGCTTTATAAGCGGGTGCCCGCAGTCTCTTTTAAGCGCGCGAAAGCAGTAAAAG
GTGACGAGTTTGATCCTGCGCTCCTTGAAGAAGCGACGGATTTGAGAAATGGCGCAAAAAAACTTCTCGAAAAGCTCAAA
ACCGACTACTTTACGAGAAACCCTGAACAGCATTTGAAAAGCTTAGCCGACATGAAGCCTGTCATTGAAACACTCATACA
GCTTGTCATCAGCTACGGAAACCGATTCGAAGCCGCGAAGCAGGAAAAATCAATCATTGATTTTTCAGATTTGGAGCATT
ACTGTTTATCCATTTTGACAGCTGAGAACGACAAAGGCGAACAGGAGCCGAGCGAGGCAGCAAGATTTTATCAGGAGCAG
TTTCATGAGGTGCTCGTTGACGAATATCAGGATACCAACCTAGTACAGGAATCGATCCTGCAGCTCGTCACAAGCGGACC
GGAAGAGACCGGCAACCTGTTTATGGTAGGAGATGTCAAACAGTCGATTTATCGATTCAGGCTTGCAGAGCCGCTTCTTT
TCCTCTCCAAATACAAACGGTTTACAGAGAGCGGAGAAGGCACGGGACGGAAAATCGACTTGAATAAGAATTTCCGAAGC
CGGGCTGATATTTTAGATAGCACAAACTTTTTATTTAAACAGCTGATGGGCGGCAAAATCGGTGAGGTTGATTATGACGA
GCAGGCTGAGCTGAAGCTTGGTGCGGCGTACCCGGACAATGATGAGACGGAAACAGAGCTGCTGCTGATCGACAACTCAG
AAGAGACGGATGCAGGCGAGGAAGCAGAAGAGCTGGAAACGGTGCAGTTCGAGGCGAAAGCGATCGCTAAGGAAATTCGT
AAGTTGATTTCATCGCCATTTAAGGTGTATGACGGAAAAACGAAAACACACCGCAATATTCAATACCGCGATATCGTGAT
TTTGTTACGTTCCATGCCGTGGGCGCCGCAAATCATGGAGGAGCTGAGAGCACAGGGCATACCGGTTTACGCCAATTTAA
CGTCAGGCTATTTTGAAGCGGTCGAAGTCGCGATCGCGCTTTCTGTGCTGAAGGTGATCGATAACCCGTATCAGGATATA
CCGCTTGCCTCTGTTTTGCGCTCACCGATTGTCGGGGCAGATGAAAACGAGCTGTCTTTGATCCGGCTTGAAAATACAAA
AGCGCCGTACTATGAAGCGATGAAAGACTATTTGGCTGCCGGCGACCGGAACGACGAGCTTTATCAAAAGCTGCAAACGT
TCTACGGACATCTGCAAAAATGGCGTGCGTTTTCGAAAAACCACTCAGTATCTGAGCTGATTTGGGAAGTGTACCGCGAT
ACAAAATACATGGATTATGTCGGCGGGATGCCGGGCGGAAAACAGCGCCAGGCCAATTTGCGCGTTCTCTATGACCGGGC
GCGCCAATATGAATCGACGGCATTTCGCGGCCTGTTCCGTTTTCTGCGGTTTATCGAACGCATGCAGGAGCGGGGCGATG
ATCTTGGAACGGCGAGAGCGCTCAGCGAGCAGGAGGATGTTGTCCGCTTAATGACGATCCACAGCAGCAAAGGGCTCGAA
TTTCCAGTCGTGTTTGCAGCGGGTCTCGGACGGAACTTCAACATGATGGACTTGAACAAATCGTACCTGCTGGACAAGGA
GCTCGGGTTTGGCACGAAGTTTATTCATCCGCAATTGCGCATCAGCTATCCGACGCTTCCGCTCATTGCCATGAAGAAAA
AAATGCGCAGGGAGCTATTGTCAGAGGAATTGCGTGTTCTCTATGTCGCATTAACGAGAGCGAAGGAAAAGCTGTTTCTG
ATTGGCTCGTGCAAGGATCATCAGAAACAGCTCGCAAAATGGCAGGCAACTGCGTCCCAAACTGACTGGCTTCTCCCGGA
ATTTGACCGCTATCAGGCAAAAACCTATTTAGATTTCATCGGGCCGGCTCTTGCCAGACACAGAGATTTGGAGGCTTTGG
CTGAAAACGGTGCGGGAGCGCATGCTGACATATCAGGCCACCCGGCTCGTTTTGCCGTTCAAATGATCCATTCCTATGAT
TTGCTGGATGATGATCTGGAAGAAAGATTGGAAGAAAAAAGCGAGCGCCTAGAAGCGATCCGCCGAGGTGAACCAGTTCC
CGGCCCGTTTGCGTTTGATGAGAAAGCCCGGGAGCAGCTAAGCTGGACATATCCGCATCATGAGGTGACGCAAATTCGCA
CAAAGCAGTCAGTTTCTGAGATCAAGAGAAAAAGAGAGTACGAGGATGAATACAGCGGCAGGGCCCCCGTTAAACCGGCA
GATGGAAGCATTCTGTACAGGCGTCCCGCTTTTATGATGAAAAAAGGTTTGACAGCGGCGGAAAAAGGGACGGCCATGCA
TACGGTTATGCAGCATATCCCGCTCACCCATGTGCCGACAATAGAAGAAGCGGAGCAGACGGTTCACAAGCTTTATGAAA
AAGAGCTGCTCACTGAAGAACAAAAAGCCGCTATTGATATAGAAGAAATCGTTCAATTTTTCCATACAGAAATCGGCGGA
CGGCTGATCGGCGCTAAATGGAAGGACCGGGAAGTGCCATTCAGTTTAGCGCTTCCGGCTAAGGAGATCTATCCTGATGC
ACAGGAGGCGGATGAGCCGCTTTTAGTGCAGGGAATCATCGACTGTCTCTATGAAACTGAGGACGGTTTATATCTCTTGG
ACTATAAATCAGACCGGATTGAGGGCAAATTCCAGCACGGTTTTGAAGGAGCGGCCCCGATCTTGAAAAAACGATACGAA
ACGCAAATTCAGCTGTACACGAAGGCAGTTGAGCAAATTGCAAAAACACAGGTAAAGGGATGTGCGCTTTATTTCTTTGA
CGGAGGGCACATTCTGACATTATAG


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

96.677

100

0.967