Detailed information    

insolico Bioinformatically predicted

Overview


Name   addA   Type   Machinery gene
Locus tag   PNF30_RS14010 Genome accession   NZ_CP116774
Coordinates   2716751..2720455 (-) Length   1234 a.a.
NCBI ID   WP_272510308.1    Uniprot ID   -
Organism   Bacillus safensis strain SRCM125915     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 2711751..2725455
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  PNF30_RS13995 (PNF30_13995) - 2711838..2712137 (-) 300 WP_048238424.1 hypothetical protein -
  PNF30_RS14000 (PNF30_14000) - 2712157..2715552 (-) 3396 WP_272510307.1 AAA family ATPase -
  PNF30_RS14005 (PNF30_14005) sbcD 2715549..2716724 (-) 1176 WP_144470097.1 exonuclease subunit SbcD -
  PNF30_RS14010 (PNF30_14010) addA 2716751..2720455 (-) 3705 WP_272510308.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  PNF30_RS14015 (PNF30_14015) addB 2720433..2723942 (-) 3510 WP_197198448.1 helicase-exonuclease AddAB subunit AddB Machinery gene
  PNF30_RS14020 (PNF30_14020) - 2724096..2724542 (+) 447 WP_048238419.1 ferritin-like domain-containing protein -
  PNF30_RS14025 (PNF30_14025) - 2724740..2725150 (-) 411 WP_025093362.1 DoxX family protein -

Sequence


Protein


Download         Length: 1234 a.a.        Molecular weight: 142235.58 Da        Isoelectric Point: 5.1733

>NTDB_id=780197 PNF30_RS14010 WP_272510308.1 2716751..2720455(-) (addA) [Bacillus safensis strain SRCM125915]
MQIPKPNNSTWTDDQWEAIVSEGQDILVAAAAGSGKTAVLVERLIRKMTRPENPVDVDRLLVVTFTNASAAEMKHRITEA
LEKELAKNPGSLHMRRQLSLMNRANISTLHSFCLQVLRTFYYEIDLDPGFRLADQTEGELLGDEVLDELFEDEYKAGKPA
FFELVDRYTSDRHDLDLQWLVKRIYEFSRSHPSPEQWMRAFLSLYDVDAQTKVEQLPFYPYIKEDLSLVFRSCLELLERA
LALSKEPGGPAPRAENFIDDLEQVNELIRHQDVFEKLYELLPNINFKRLKTCKGDEYDPVLLEKATDARNQAKKQLEKLK
DEYFMRSPAQHLKSLAEMKPVVETLVELVIQFGQRFEKAKQEKSIVDFSDLEHYCLRILAEQDAEGNLIETEAAKYYQQQ
FEEVLVDEYQDTNLVQETILKLVSKGEHAAEGNLFMVGDVKQSIYRFRLAEPMLFLNKYKQFKPDGKETGKRIDLNKNFR
SRSDVLDSTNFLFKQLMGETVGEIEYDEQAELKLGASYPESKDTTTEMLLVHLDQQEAETDEEREELETVQLEARVIAKK
IRELVEQPFQVYDAKQQMTRNLQYRDIVILLRSMPWAPQMMEELKKQGIPVYANLSSGYFEATEVSVILSLLKVIDNPYQ
DIPLAAVLRSPIVHLDENEMALIRTSDKKGTYYDAVKAFMSVTHSDHPTCKKLEQFFRLLRKWRDFSMNHSVAELIWEVY
RDTQYLDYVGGMPGGKQRQANLRALYDRAKQYEKAAFRGLFRFLRFIERMQERGDDLGAAKTFSETEDVVRMMTIHSSKG
LEFPIVFTAGLGRNFNMMDLNQSYLLDKELGFGSKYIHPELRISYATLPLVAMKKKMRKELLSEELRVLYVALTRAKEKL
FLVGSVKNQVKALSKWQNAATGEDWLIPDFERYQSKTYLDFIGPALIRHQAMSSILEETGNVVLSHPSVFTISFTQASDL
LKEDMSLEKKQQDEVVQALMDGLPVEGYGDADEKVAERLSWRYPYLAASQVGTKQSVSEIKRMKEIQDEYSVPSSLRKAR
TTLYDRPAFMKKKALTAAEQGTAMHTVMQHIPLPSDVLYDDSRIQQLLDSLQQRDLLTNEQVQSIDQEGITAFFSTSIGQ
KLQKADWVKREVSFSMVLPVKEVYSHIDAEGEPVLIQGMIDCLFETDGKLYLLDYKTDRVQGRYTGGLKAAAPILKKRYE
TQIALYAKAVERLTNRTLEEKILYFFDGNLEISL

Nucleotide


Download         Length: 3705 bp        

>NTDB_id=780197 PNF30_RS14010 WP_272510308.1 2716751..2720455(-) (addA) [Bacillus safensis strain SRCM125915]
ATGCAAATACCAAAACCGAATAACAGTACTTGGACGGATGACCAGTGGGAAGCCATCGTTTCAGAAGGACAAGATATCCT
TGTTGCGGCGGCGGCAGGGTCAGGTAAAACAGCTGTTTTGGTTGAACGGCTGATTCGAAAAATGACCCGTCCTGAAAATC
CAGTTGATGTGGATCGTCTGCTCGTTGTGACTTTCACAAATGCATCTGCGGCAGAGATGAAACATCGGATCACAGAAGCA
CTTGAAAAGGAATTAGCCAAAAACCCCGGGTCCCTTCATATGAGAAGACAGCTGTCACTCATGAATCGTGCCAATATTTC
CACCCTGCACTCCTTTTGCTTGCAGGTTCTGCGCACCTTTTATTATGAGATTGACCTTGATCCAGGCTTTCGTTTGGCTG
ATCAAACAGAAGGAGAATTATTAGGAGATGAAGTGTTAGATGAACTGTTTGAGGATGAATATAAGGCTGGAAAGCCAGCG
TTCTTTGAACTGGTTGATCGTTACACGTCTGACCGTCATGATTTAGACTTGCAATGGCTTGTGAAGAGAATTTATGAGTT
TTCCAGATCTCACCCCTCACCTGAGCAATGGATGAGGGCATTCCTTTCTCTTTATGATGTAGATGCTCAAACAAAAGTAG
AACAATTACCGTTTTATCCATATATCAAAGAGGATCTTTCTCTCGTTTTTCGAAGCTGTCTGGAACTGCTTGAACGAGCT
CTCGCTCTATCAAAAGAACCGGGCGGCCCAGCACCGAGAGCGGAAAATTTTATAGATGATTTAGAGCAAGTCAATGAATT
GATCAGGCATCAAGATGTTTTTGAGAAGCTTTACGAGCTTTTGCCAAACATCAATTTTAAAAGGCTCAAAACATGTAAAG
GGGACGAATATGACCCTGTGCTGTTAGAAAAAGCCACAGATGCACGCAATCAAGCAAAAAAACAATTAGAAAAACTTAAA
GATGAATACTTTATGCGCAGTCCAGCCCAGCATTTGAAAAGCTTAGCTGAAATGAAGCCGGTGGTCGAAACACTTGTGGA
GCTTGTTATCCAATTTGGACAGCGTTTCGAAAAAGCGAAGCAAGAAAAATCAATCGTGGACTTTTCGGATTTAGAGCATT
ATTGCTTACGCATTTTAGCGGAGCAGGACGCGGAAGGAAATTTGATCGAAACAGAAGCGGCCAAGTACTATCAACAGCAG
TTTGAAGAAGTGCTCGTTGATGAATATCAAGATACAAACCTTGTACAAGAAACGATTTTAAAGCTTGTATCTAAAGGGGA
ACATGCTGCAGAGGGCAACCTGTTTATGGTTGGTGATGTAAAGCAGTCTATTTATCGTTTTAGACTGGCTGAGCCCATGC
TCTTTTTAAACAAATATAAACAATTTAAACCAGATGGCAAAGAAACAGGGAAGAGAATTGATTTAAATAAAAACTTCCGC
AGCCGTTCAGATGTGTTAGACAGTACAAACTTTTTGTTCAAACAGCTGATGGGGGAAACAGTTGGAGAAATTGAATATGA
TGAACAAGCTGAATTAAAGCTTGGAGCGAGTTATCCAGAAAGTAAAGATACAACGACAGAAATGCTCCTTGTTCATTTAG
ATCAACAGGAAGCAGAAACTGACGAAGAGCGGGAAGAACTAGAGACCGTACAGCTTGAAGCGAGAGTCATTGCTAAAAAA
ATAAGAGAATTGGTAGAGCAGCCATTTCAAGTGTACGATGCAAAACAGCAAATGACCCGTAATTTGCAGTATCGGGACAT
TGTGATTTTGCTCCGCTCTATGCCGTGGGCCCCGCAAATGATGGAGGAATTGAAGAAGCAGGGGATTCCTGTGTATGCGA
ATCTTTCCTCTGGTTATTTTGAAGCAACAGAGGTGTCTGTGATTCTTTCTCTGTTAAAAGTCATCGATAATCCATATCAG
GATATCCCGCTTGCAGCTGTATTAAGATCACCTATTGTTCATTTAGACGAAAATGAAATGGCACTGATCCGCACGAGTGA
TAAGAAAGGCACTTATTATGATGCTGTGAAAGCATTTATGAGTGTGACTCATTCAGATCACCCTACATGCAAAAAACTAG
AACAATTTTTCAGACTGCTGCGTAAGTGGCGTGATTTCTCCATGAATCATTCAGTAGCGGAATTGATTTGGGAAGTATAC
CGCGATACGCAGTATCTAGATTACGTTGGCGGGATGCCTGGAGGCAAGCAGAGACAGGCGAACCTCCGTGCTCTTTATGA
TCGAGCGAAGCAGTATGAAAAAGCTGCCTTTAGAGGGCTGTTCCGTTTTCTTCGCTTTATTGAAAGAATGCAGGAGCGTG
GAGATGATCTTGGTGCGGCAAAAACGTTCAGCGAAACAGAGGACGTTGTTCGCATGATGACGATCCACAGCAGTAAAGGA
TTAGAATTTCCAATCGTCTTTACCGCAGGACTCGGCAGGAACTTTAATATGATGGACTTAAACCAGTCTTACTTGCTTGA
TAAAGAATTAGGATTTGGAAGCAAATATATTCATCCAGAGCTGAGAATTAGTTATGCAACATTACCGCTTGTGGCGATGA
AAAAAAAGATGAGAAAAGAGCTATTATCTGAAGAGCTGAGAGTTCTATATGTGGCGCTCACAAGGGCTAAGGAAAAATTG
TTTCTGGTCGGCTCTGTCAAAAATCAGGTGAAAGCATTAAGCAAATGGCAAAATGCTGCAACCGGAGAAGACTGGCTGAT
CCCTGATTTTGAACGTTATCAATCGAAAACATACTTAGATTTTATTGGACCTGCTCTTATCCGTCACCAAGCGATGTCAT
CTATTTTAGAAGAAACAGGTAATGTCGTTCTGTCGCATCCATCAGTATTCACGATCTCATTTACTCAAGCTTCTGATCTT
CTAAAAGAAGATATGTCACTTGAAAAGAAGCAGCAAGATGAGGTGGTACAAGCATTGATGGACGGTCTGCCTGTTGAAGG
ATATGGTGATGCTGATGAGAAAGTAGCAGAGAGACTTTCATGGAGATATCCATATTTAGCGGCCTCACAAGTCGGTACAA
AGCAGTCTGTTTCTGAGATAAAAAGAATGAAAGAAATACAGGATGAGTACAGTGTTCCTTCTTCTCTTCGAAAAGCTCGT
ACAACGTTGTATGACCGTCCGGCTTTCATGAAGAAAAAAGCACTGACTGCTGCAGAGCAAGGCACCGCAATGCACACAGT
CATGCAGCATATTCCGCTTCCTTCTGATGTGCTCTATGATGATTCACGTATACAGCAACTGCTCGATTCCTTACAGCAGA
GAGACTTACTAACAAATGAACAAGTCCAGTCAATTGATCAAGAAGGAATTACAGCTTTCTTCTCTACTTCTATTGGTCAA
AAGCTGCAAAAAGCGGACTGGGTGAAACGAGAAGTGTCATTTAGTATGGTGTTACCTGTTAAAGAGGTATACAGCCATAT
TGATGCAGAAGGAGAGCCTGTCCTTATTCAAGGGATGATTGACTGTTTATTTGAAACGGACGGAAAGCTATATTTACTAG
ATTATAAAACCGATAGAGTGCAAGGCAGATATACAGGCGGCCTTAAAGCAGCTGCGCCTATTTTGAAAAAGCGCTATGAA
ACTCAAATAGCGTTATATGCAAAAGCAGTAGAACGTTTAACAAACAGAACATTAGAGGAGAAAATTCTTTATTTCTTTGA
CGGGAATTTAGAAATTTCTTTATAA


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

66.181

100

0.663