Detailed information    

insolico Bioinformatically predicted

Overview


Name   addA   Type   Machinery gene
Locus tag   SOZ35_RS05725 Genome accession   NZ_CP150480
Coordinates   1152021..1155725 (+) Length   1234 a.a.
NCBI ID   WP_340640431.1    Uniprot ID   -
Organism   Bacillus atrophaeus strain TL401     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 1147021..1160725
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  SOZ35_RS05710 (SOZ35_05710) - 1147467..1147793 (-) 327 WP_340640429.1 four-helix bundle copper-binding protein -
  SOZ35_RS05715 (SOZ35_05715) - 1147890..1148327 (-) 438 WP_003327683.1 ferritin family protein -
  SOZ35_RS05720 (SOZ35_05720) addB 1148534..1152034 (+) 3501 WP_340640430.1 helicase-exonuclease AddAB subunit AddB Machinery gene
  SOZ35_RS05725 (SOZ35_05725) addA 1152021..1155725 (+) 3705 WP_340640431.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  SOZ35_RS05730 (SOZ35_05730) sbcD 1155796..1156974 (+) 1179 WP_340640432.1 exonuclease subunit SbcD -
  SOZ35_RS05735 (SOZ35_05735) sbcC 1156971..1160363 (+) 3393 WP_340640433.1 exonuclease subunit SbcC -
  SOZ35_RS05740 (SOZ35_05740) - 1160380..1160682 (+) 303 WP_010788170.1 hypothetical protein -

Sequence


Protein


Download         Length: 1234 a.a.        Molecular weight: 141440.97 Da        Isoelectric Point: 5.3707

>NTDB_id=970465 SOZ35_RS05725 WP_340640431.1 1152021..1155725(+) (addA) [Bacillus atrophaeus strain TL401]
MQIPKPADSTWTDDQWNAIVSSGQDILVAAAAGSGKTAVLVERMIRKITAEENPIDVDRLLVVTFTNASAAEMKHRIAEA
LEKELVKRPGSLHIRRQLSLLNRASISTLHSFCLQVLRKYYYLIDLDPGFRIADQTEGELLGDEVLDELFEDEYAKGEKA
FFELVDRYTTDRHDLDLQHLVKRVYEFSRSHPDPKTWLEGFVHLYDASEKSTIEELPFYPYMKEDIAMVLSAVKEKLQRA
LELTKVPGGPAPRADNFLDDLAQTEDLIAHSSDFTELYKRVPAVSFKRAKAVKGDEFDQALTEEATDLRNGAKKLLEKLK
TDYFTRSPEQHLKSLSDMKPVIETLVQLVISYGKRFEAAKQEKSIIDFSDLEHYCLSILTAVNESGERKPSEAAAYYQEQ
FQEVLVDEYQDTNLVQEAILQLVTSGPEASGNLFMVGDVKQSIYRFRLAEPLLFLSKYKRFTETGEGTGRKIDLNKNFRS
RADILDSTNFLFKQLMGGKVGEVDYDEQAELKLGASYPPNDQTETELLLIDRAEEKEASEETEELETVQLEAKAIAKQIR
KLVSSPYKVYDGKSKTHSNIRYRDIVILLRSMPWAPQIMEELKAQGIPVYANLTSGYFEAVEVSVAISALKVIDNPYQDI
PLASVLRSPIVGADENELSLIRMHNKKAPFYEAMKDYLSGGDRNDELYQKLNTFFELLQKWRSFSKNHSVSELIWEVYRD
SKYMDYVGGMPGGKQRQANLRVLYDRSRQYESTAFRGLFRFLRFIERMQERGDDLGTARALSEQEDVVRLMTIHSSKGLE
FPVVFAAGLGRNFNMMDLNKSYLLDKELGFGTKFIHPEWRISYPTLPLIAMKKKMRRELLSEELRVLYVALTRAKEKLFL
VGSCKNREKQLAKWQASASQPDWLLPDFERYQAKTYLDFIGPALIRHRDMGTDALQGLASQADISEHPARFNIQMVSAQD
LLDDDLEERQEEKSGRLDAICRGEPVSGSFEFEEQARQRLSWRYPYHDVTKIRTKQSVSEIKRKKEYEDEYSGRSLIRPA
DGNMLYRRPAFMMKKGLTAAEKGTAMHTVMQHIPLTHAPSKEEAERIVKRLYEKELLTEDQQAVIDLEEIVQFFHTEIGE
KLIGAKWINREVPFSMALSAQDAFLDTESKDEPILVQGIIDCLYETDEGLFLLDYKTDRIEGKFQHGFEGAAPILKKRYE
TQIELYTKAVEQITKTNVKGRALYFFDGGHVLNV

Nucleotide


Download         Length: 3705 bp        

>NTDB_id=970465 SOZ35_RS05725 WP_340640431.1 1152021..1155725(+) (addA) [Bacillus atrophaeus strain TL401]
ATGCAAATTCCTAAACCGGCAGACAGTACCTGGACAGATGACCAGTGGAACGCCATTGTCTCATCCGGACAGGATATTCT
CGTTGCAGCGGCCGCTGGATCTGGAAAAACCGCTGTGCTTGTTGAGAGAATGATCCGAAAAATTACCGCGGAGGAAAATC
CGATAGATGTGGACCGTCTTTTGGTCGTGACATTTACGAACGCCTCTGCGGCTGAAATGAAGCACCGGATCGCGGAGGCT
TTGGAGAAAGAGCTCGTGAAACGTCCCGGCTCTCTTCATATCAGGCGGCAGCTGTCTCTGTTGAACCGGGCCAGCATTTC
AACCCTTCATTCGTTCTGCTTGCAGGTGCTCAGAAAATATTATTATCTCATTGATCTTGATCCGGGCTTTCGGATTGCCG
ATCAGACAGAAGGCGAGCTGCTCGGGGACGAGGTCCTTGATGAACTGTTTGAAGACGAATACGCGAAGGGTGAAAAAGCG
TTTTTCGAACTGGTGGACCGGTATACGACAGACCGGCACGACTTAGACCTTCAGCACCTCGTGAAACGGGTGTATGAGTT
TTCCCGTTCCCATCCCGATCCAAAAACGTGGCTGGAAGGTTTCGTTCATCTTTACGATGCCTCAGAAAAAAGCACGATTG
AAGAACTGCCGTTTTATCCATATATGAAAGAAGACATTGCGATGGTGCTGAGTGCTGTGAAAGAAAAGCTTCAGCGGGCG
CTTGAGCTGACAAAAGTGCCGGGCGGCCCTGCGCCGCGCGCTGATAATTTTCTGGATGATCTTGCACAGACAGAGGATCT
GATCGCACATTCGTCGGATTTCACTGAATTATACAAGCGGGTTCCCGCAGTCTCCTTTAAGCGTGCCAAAGCGGTCAAAG
GAGATGAATTTGACCAGGCGCTCACAGAAGAAGCGACGGATTTACGGAACGGCGCGAAAAAACTGCTGGAAAAACTAAAA
ACGGACTATTTCACAAGAAGCCCCGAGCAGCATCTGAAGAGCCTGTCGGATATGAAGCCTGTGATTGAAACGCTCGTCCA
GCTTGTCATCAGCTACGGAAAACGGTTTGAAGCCGCCAAACAAGAGAAATCAATAATTGATTTCTCTGACTTGGAGCATT
ACTGCTTGTCTATCCTGACAGCCGTGAATGAGTCGGGGGAGCGCAAGCCGAGTGAGGCGGCGGCTTACTATCAAGAGCAG
TTCCAAGAGGTGCTGGTTGACGAATATCAAGATACGAATCTTGTGCAGGAAGCCATACTGCAGCTTGTCACAAGCGGGCC
TGAAGCTTCAGGAAACTTGTTTATGGTAGGGGACGTCAAACAGTCCATCTACCGATTCAGGCTTGCCGAACCGCTTCTTT
TCCTTTCTAAATATAAACGATTTACCGAAACGGGAGAGGGGACAGGCCGAAAAATTGATTTGAACAAAAACTTTCGAAGC
CGGGCGGATATTTTAGACAGCACGAACTTTCTGTTTAAGCAGCTCATGGGCGGCAAGGTCGGCGAGGTTGATTATGATGA
GCAGGCGGAATTGAAGCTAGGAGCCTCTTACCCTCCGAATGACCAGACTGAAACGGAGCTGTTGCTGATTGACAGAGCGG
AGGAAAAAGAGGCGAGTGAAGAAACAGAAGAGCTCGAAACCGTTCAGCTTGAAGCAAAAGCGATTGCAAAGCAGATTCGA
AAGCTCGTATCCTCTCCTTACAAAGTCTATGATGGAAAATCGAAAACACACAGCAATATCCGCTACCGCGATATCGTGAT
TTTACTGCGTTCCATGCCGTGGGCGCCGCAAATCATGGAAGAACTGAAAGCTCAAGGCATACCCGTCTATGCCAATTTGA
CATCAGGCTATTTTGAAGCGGTCGAGGTGTCTGTTGCGATTTCCGCTTTAAAAGTGATTGATAATCCGTACCAAGATATT
CCTCTCGCTTCCGTGCTGCGCTCGCCGATTGTCGGCGCGGATGAAAATGAGCTTTCACTGATTCGGATGCATAATAAAAA
AGCGCCTTTCTATGAAGCGATGAAGGACTATCTTTCAGGCGGGGACCGAAATGACGAGCTATATCAAAAGCTGAACACGT
TTTTTGAGCTTTTGCAAAAATGGCGCTCTTTTTCGAAAAACCATTCAGTTTCCGAGCTGATATGGGAAGTTTATCGTGAC
AGCAAATATATGGACTATGTCGGCGGTATGCCGGGCGGAAAACAGCGGCAGGCCAATTTGCGCGTTCTCTATGACCGGTC
CCGCCAGTATGAATCGACGGCATTTCGCGGTTTATTTCGTTTCTTGCGGTTTATAGAACGTATGCAGGAACGGGGCGATG
ACCTCGGGACAGCGAGAGCGCTCAGCGAGCAGGAGGACGTGGTCCGCCTGATGACGATTCACAGCAGCAAGGGGCTTGAA
TTCCCTGTCGTATTCGCTGCGGGACTTGGACGGAATTTTAATATGATGGATTTGAATAAATCATATCTGCTGGACAAAGA
GCTTGGTTTCGGCACAAAGTTTATTCACCCCGAATGGCGCATCAGCTATCCGACACTTCCGCTCATCGCCATGAAGAAAA
AAATGCGCCGGGAGCTGCTGTCAGAAGAGCTGCGTGTGCTATACGTGGCTTTAACAAGAGCGAAGGAAAAGCTGTTTCTT
GTCGGTTCCTGCAAGAATCGTGAGAAGCAGCTGGCGAAATGGCAGGCTTCAGCGTCTCAGCCAGACTGGCTTCTCCCGGA
TTTTGAGCGGTATCAGGCGAAAACGTATTTGGATTTCATCGGTCCCGCATTGATTCGTCACAGAGACATGGGGACAGATG
CTTTACAAGGGCTTGCGAGTCAAGCTGACATATCAGAACACCCTGCCCGGTTTAACATCCAAATGGTCAGCGCCCAAGAT
TTATTGGATGATGATCTGGAAGAAAGACAAGAGGAAAAGAGCGGCCGACTTGACGCCATCTGCCGCGGTGAGCCTGTGTC
CGGTTCGTTTGAATTCGAAGAACAAGCGCGGCAACGCCTGTCATGGCGATACCCTTATCACGACGTGACAAAAATTCGCA
CGAAGCAGTCTGTTTCCGAGATCAAGAGAAAGAAAGAATACGAGGATGAATACAGCGGCCGCTCTCTTATCAGACCGGCT
GACGGAAACATGTTGTACAGGCGCCCTGCGTTTATGATGAAAAAAGGGCTGACTGCGGCTGAAAAAGGAACGGCGATGCA
CACCGTTATGCAGCATATCCCGCTGACACATGCACCGTCAAAAGAGGAAGCGGAACGTATTGTCAAACGTCTTTATGAAA
AAGAGCTGCTCACCGAAGACCAGCAAGCCGTTATTGACCTAGAGGAAATCGTGCAATTTTTCCATACTGAAATCGGCGAA
AAGCTGATCGGCGCAAAATGGATTAACCGCGAAGTGCCGTTTAGCATGGCGCTTTCAGCACAAGATGCGTTTCTGGACAC
TGAATCTAAAGATGAGCCTATATTGGTGCAAGGAATTATTGACTGTCTGTATGAGACTGATGAAGGGCTTTTCTTGCTGG
ATTACAAAACGGACCGAATCGAAGGGAAATTCCAGCACGGATTTGAGGGGGCGGCTCCTATTCTTAAAAAACGGTACGAA
ACTCAAATCGAGCTATACACAAAAGCTGTAGAACAAATAACGAAAACCAATGTGAAGGGACGTGCACTCTACTTCTTCGA
CGGAGGACACGTTTTGAACGTATAA


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

86.467

100

0.865


Multiple sequence alignment