Detailed information    

insolico Bioinformatically predicted

Overview


Name   addA   Type   Machinery gene
Locus tag   NSQ36_RS05280 Genome accession   NZ_CP150182
Coordinates   1086845..1090543 (+) Length   1232 a.a.
NCBI ID   WP_251191012.1    Uniprot ID   -
Organism   Bacillus sp. FSL W8-1143     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 1081845..1095543
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  NSQ36_RS05265 (NSQ36_05265) - 1082138..1082548 (+) 411 WP_309216359.1 DoxX family protein -
  NSQ36_RS05270 (NSQ36_05270) - 1082746..1083192 (-) 447 WP_284906204.1 ferritin-like domain-containing protein -
  NSQ36_RS05275 (NSQ36_05275) addB 1083358..1086867 (+) 3510 WP_339206959.1 helicase-exonuclease AddAB subunit AddB Machinery gene
  NSQ36_RS05280 (NSQ36_05280) addA 1086845..1090543 (+) 3699 WP_251191012.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  NSQ36_RS05285 (NSQ36_05285) sbcD 1090570..1091745 (+) 1176 WP_044139868.1 exonuclease subunit SbcD -
  NSQ36_RS05290 (NSQ36_05290) - 1091742..1095137 (+) 3396 WP_251191011.1 SMC family ATPase -
  NSQ36_RS05295 (NSQ36_05295) - 1095157..1095456 (+) 300 WP_113386916.1 HNH endonuclease -

Sequence


Protein


Download         Length: 1232 a.a.        Molecular weight: 142186.23 Da        Isoelectric Point: 5.0948

>NTDB_id=965275 NSQ36_RS05280 WP_251191012.1 1086845..1090543(+) (addA) [Bacillus sp. FSL W8-1143]
MQIPKPNNSTWTDDQWEAIVSEGQDILVAAAAGSGKTAVLVERLIRKMTRPEHPVDVDRLLVVTFTNASAAEMKHRITEA
LEKELAKNPGSLHMRRQLSLMNRANISTLHSFCLQVLRTFYYEIDLDPGFRLADQTEGELLGDEVLDELFEDEYKAGKPS
FFELVDRYTSDRHDLDLQWLVKRIYEFSRSHPSPEQWMRAFLSLYDVDAQTKVEELPFYPYIKEDLSLVLRSCQELLERA
LSLSKEPGGPAPRAENFIDDLEQVNELIRHQDDFEKLYELLPNVNFKRLKTCKGDEYDPALLEKSTDARNQAKKQLEKLK
DEYFMRSPAQHLKSLAEMKPVVETLVELVIQFGERFERAKQEKSIVDFSDLEHYCLRILAEQDAEGHLIETEAAKYYQQQ
FEEVLVDEYQDTNLVQETILKLVSKGKHSAEGNLFMVGDVKQSIYRFRLAEPMLFLNKYKHFQPDGKETGKRIDLNKNFR
SRSDVLDSTNFLFKQLMGETVGEIEYDEQAELKLGASYPESKDTTTEMLLVHLDQQEAETGEEREELETVQFEARIIAKK
IKELVEQPFQVYDAKQQMTRNLQYRDIVILLRSMPWAPQMMEELKKQGIPVYANLSSGYFEATEVSVILSLLKVIDNPYQ
DIPLAAVLRSPIVHLDENELALIRTSDKKGTYYDAVKAFMSVTHSDHPTCKKLERFFQLLRKWRDFSINHSVAELIWEVY
RDTQYLEYVGGMPGGKQRQANLRALYDRAKQYEKAAFRGLFRFLRFIERMQERGDDLGAAKTFSETEDVVRMMTIHSSKG
LEFPVVFTAGLGRNFNMMDLNQPYLLDKELGFGSKYIHPELRISYATLPLVAMKKKMRKELLSEELRVLYVALTRAKEKL
FLVGSVKNQVKALSKWQNAATGEEWLLPDFERYQSKTYLDFIGPALIRHQAMSSVLEETGDIVLSHPSTFTISFTQASDL
LKEDMSLEKKEQDEIVQALIDGLPVEGYGDADEKVAERLSWKYPYLAASQVGTKQSVSEIKRMKEIQDEYSVPSSIRKAR
ATLYDRPAFMKKKTLTAAEQGTAMHTVMQHIPLPSEEPYDESRIGHLLESLQQRDLLTDEQIQSINQEGIASFFSTSIGQ
KLLKADWVKREVSFSMVLPVKEVYSHIDTEGEPVLIQGMIDCLFETDGKLYLLDYKTDRVQGRYTVDAAEPILKKRYETQ
IALYAKAVERLTNRTLEEKILYFFDGNLEISL

Nucleotide


Download         Length: 3699 bp        

>NTDB_id=965275 NSQ36_RS05280 WP_251191012.1 1086845..1090543(+) (addA) [Bacillus sp. FSL W8-1143]
ATGCAAATACCAAAACCGAATAACAGTACGTGGACGGATGACCAGTGGGAAGCCATCGTTTCAGAAGGACAAGATATCTT
GGTTGCGGCGGCGGCAGGGTCAGGTAAAACAGCTGTTTTGGTTGAACGCCTGATTCGAAAAATGACCCGGCCTGAACATC
CAGTTGATGTGGATCGTCTGCTCGTTGTGACTTTCACAAATGCTTCTGCGGCAGAGATGAAGCATCGGATCACAGAAGCA
CTTGAAAAAGAATTAGCCAAAAACCCTGGGTCTCTTCATATGAGAAGGCAGCTGTCCCTCATGAATCGAGCCAATATTTC
AACCTTGCACTCCTTTTGCTTGCAGGTTTTGCGCACCTTTTACTATGAAATTGATCTTGATCCAGGCTTTCGTTTGGCTG
ACCAAACAGAAGGAGAATTATTAGGAGATGAAGTGTTAGACGAACTGTTTGAGGATGAATATAAGGCTGGAAAGCCATCA
TTCTTTGAATTGGTTGATCGTTATACATCTGACCGTCACGACTTAGATTTGCAATGGCTCGTGAAGAGAATTTATGAGTT
TTCGAGATCTCATCCTTCTCCGGAGCAATGGATGCGGGCATTTCTTTCACTTTATGATGTAGATGCTCAAACAAAAGTAG
AAGAATTACCGTTTTATCCATATATCAAAGAAGATCTTTCTCTCGTTCTCCGGAGCTGCCAGGAGCTGCTTGAACGAGCT
CTTTCGCTATCAAAAGAACCGGGCGGCCCAGCACCGAGAGCAGAGAATTTTATAGATGATTTAGAGCAAGTCAATGAATT
AATCCGTCATCAAGATGATTTTGAGAAGCTTTATGAGCTTTTGCCGAACGTTAATTTTAAAAGGCTCAAAACGTGCAAAG
GGGACGAATATGACCCTGCTCTCTTAGAAAAATCCACTGATGCACGTAATCAAGCAAAAAAACAATTAGAAAAACTAAAA
GATGAATACTTCATGCGCAGTCCTGCCCAGCATTTAAAAAGCTTAGCTGAAATGAAGCCAGTTGTGGAGACGCTTGTAGA
GCTTGTGATCCAATTTGGTGAGCGTTTCGAAAGAGCGAAGCAGGAAAAGTCAATTGTCGACTTTTCGGATTTAGAGCACT
ATTGCTTACGCATTTTAGCGGAGCAGGATGCAGAAGGACATTTGATCGAAACAGAAGCTGCCAAATACTATCAACAGCAG
TTTGAAGAAGTGCTCGTTGATGAATATCAGGATACAAACCTTGTACAAGAAACGATTTTAAAGCTTGTATCTAAGGGGAA
ACATTCTGCAGAGGGCAATCTGTTTATGGTTGGTGATGTAAAGCAGTCTATTTATCGTTTTAGGCTGGCAGAGCCTATGC
TCTTTTTAAACAAATATAAACACTTTCAACCAGACGGCAAAGAAACAGGGAAGAGAATCGATTTAAATAAAAACTTCCGT
AGCCGTTCAGATGTTTTAGATAGTACGAACTTTTTGTTCAAGCAGCTGATGGGGGAAACAGTGGGAGAAATTGAATATGA
TGAACAAGCTGAATTAAAGCTTGGAGCGAGTTATCCAGAAAGCAAAGATACAACGACAGAAATGCTTCTTGTCCACTTAG
ATCAGCAGGAAGCAGAAACCGGCGAAGAGCGAGAAGAGCTCGAGACCGTCCAATTTGAAGCGAGAATCATTGCTAAAAAA
ATAAAAGAATTAGTGGAGCAGCCATTTCAAGTGTACGATGCAAAGCAGCAAATGACCCGTAATTTGCAGTATCGTGACAT
TGTCATTTTGCTTCGGTCTATGCCTTGGGCTCCGCAAATGATGGAGGAATTAAAGAAGCAGGGAATCCCTGTATATGCGA
ATCTTTCCTCTGGTTATTTTGAAGCAACAGAGGTGTCTGTCATTCTTTCATTGTTAAAAGTCATCGATAATCCATATCAG
GATATCCCGCTTGCTGCTGTTTTAAGATCACCTATTGTTCATTTAGACGAAAATGAATTGGCTCTGATTCGAACGAGTGA
TAAAAAAGGCACGTATTATGATGCTGTAAAGGCATTCATGAGTGTGACGCATTCTGATCACCCTACATGCAAAAAACTAG
AGCGATTTTTCCAATTACTGCGCAAGTGGCGTGATTTTTCTATCAATCATTCGGTGGCAGAATTAATTTGGGAAGTCTAC
CGTGATACGCAGTATCTTGAATATGTTGGCGGAATGCCTGGAGGTAAGCAGCGACAGGCAAATCTTCGTGCCCTTTATGA
CCGGGCTAAGCAATACGAAAAAGCTGCCTTTAGAGGGCTATTCCGATTCCTTCGTTTTATTGAAAGAATGCAGGAGCGTG
GGGATGATCTTGGTGCAGCAAAAACGTTCAGTGAAACAGAGGACGTTGTGCGCATGATGACGATCCACAGCAGTAAAGGA
TTAGAATTTCCAGTCGTCTTTACCGCAGGGCTCGGCAGAAACTTTAATATGATGGACTTAAACCAGCCCTATTTACTTGA
TAAAGAACTAGGCTTTGGAAGCAAGTACATCCATCCTGAGCTGAGAATTAGTTATGCGACATTACCACTTGTGGCGATGA
AAAAAAAGATGAGAAAAGAGTTGTTATCTGAAGAATTAAGGGTCCTATATGTAGCGCTCACAAGGGCTAAAGAAAAATTA
TTTCTAGTCGGCTCTGTCAAAAATCAGGTGAAAGCATTAAGCAAATGGCAAAATGCCGCAACCGGAGAAGAGTGGCTGCT
CCCTGATTTTGAACGGTATCAATCGAAAACATACTTAGATTTCATTGGCCCTGCCCTTATCCGTCATCAAGCGATGTCAT
CTGTTTTAGAAGAAACAGGAGATATTGTTCTTTCGCATCCGTCTACATTCACTATCTCATTTACGCAAGCTTCTGATCTT
TTAAAGGAAGATATGTCACTTGAAAAAAAGGAGCAAGACGAGATTGTACAAGCATTGATCGATGGTCTACCTGTTGAAGG
ATATGGTGATGCTGATGAGAAGGTGGCAGAGAGACTCTCATGGAAATATCCGTATCTAGCGGCCTCGCAAGTCGGCACAA
AGCAGTCTGTTTCCGAGATAAAAAGAATGAAAGAAATACAGGATGAGTACAGTGTTCCTTCTTCTATTCGAAAAGCTCGT
GCAACATTGTATGACCGGCCAGCTTTCATGAAGAAGAAAACACTCACTGCCGCAGAACAAGGCACCGCAATGCATACAGT
GATGCAGCATATCCCGCTCCCTTCTGAGGAGCCCTATGATGAATCACGTATAGGACACCTGCTCGAATCCTTACAGCAGC
GAGACTTGCTAACAGATGAGCAGATCCAATCAATTAATCAAGAAGGAATTGCTTCTTTCTTCTCTACTTCAATTGGTCAA
AAACTGCTAAAAGCGGACTGGGTAAAACGAGAGGTGTCATTTAGTATGGTGTTACCTGTTAAAGAGGTATACAGTCATAT
TGATACTGAGGGAGAGCCTGTTCTGATTCAAGGGATGATTGACTGTTTATTTGAAACAGATGGAAAGCTATATTTACTAG
ATTATAAAACTGATAGAGTACAAGGCAGATATACAGTTGACGCTGCTGAACCGATCTTGAAAAAGCGTTATGAAACCCAA
ATAGCCTTATATGCAAAAGCTGTAGAGCGTTTGACAAACAGAACATTAGAGGAGAAAATTCTCTATTTCTTCGATGGAAA
TTTAGAAATTTCTTTATAA


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

66.209

100

0.665


Multiple sequence alignment