Detailed information    

insolico Bioinformatically predicted

Overview


Name   addA   Type   Machinery gene
Locus tag   KIV12_RS16495 Genome accession   NZ_CP075052
Coordinates   3233766..3237470 (-) Length   1234 a.a.
NCBI ID   WP_217967380.1    Uniprot ID   -
Organism   Bacillus altitudinis strain LZP 02     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 3228766..3242470
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  KIV12_RS16480 (KIV12_16480) - 3228856..3229155 (-) 300 WP_017360217.1 hypothetical protein -
  KIV12_RS16485 (KIV12_16485) sbcC 3229173..3232568 (-) 3396 WP_217967378.1 exonuclease subunit SbcC -
  KIV12_RS16490 (KIV12_16490) sbcD 3232565..3233740 (-) 1176 WP_217967379.1 exonuclease subunit SbcD -
  KIV12_RS16495 (KIV12_16495) addA 3233766..3237470 (-) 3705 WP_217967380.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  KIV12_RS16500 (KIV12_16500) addB 3237448..3240957 (-) 3510 WP_217967381.1 helicase-exonuclease AddAB subunit AddB Machinery gene
  KIV12_RS16505 (KIV12_16505) - 3241124..3241570 (+) 447 WP_007499129.1 ferritin-like domain-containing protein -
  KIV12_RS16510 (KIV12_16510) - 3241762..3242172 (-) 411 WP_008348626.1 DoxX family protein -

Sequence


Protein


Download         Length: 1234 a.a.        Molecular weight: 142653.66 Da        Isoelectric Point: 5.1518

>NTDB_id=567430 KIV12_RS16495 WP_217967380.1 3233766..3237470(-) (addA) [Bacillus altitudinis strain LZP 02]
MQIPKPNNSTWTDDQWNAIVSEGQDILVAAAAGSGKTAVLVERLIRKMTRPEQPVDVDRLLVVTFTNASAAEMKHRITEA
LEKELSKNPGSLHMRRQLSLMNRANISTLHSFCLQVLRTFYYEIDLDPGFRLADQTEGELLGDEVLDELFEDEYKAGKPS
FFELVDRYTSDRHDLDLQWLVKRIYEFSRSHPAPEQWMRAFLSLYDVDTQTKVEELPFYPYIKEDLSLVLRSCQELLEQA
LTLSKEPGGPAPRAENFIDDLEQVNELIRHQDDFGTLYELLPNINFKRLKTCKGDDYDPALLEKATDARNQAKKQLEKLK
DEYFMRSPDQHLKSLAEMKPVVETLVELVIQYGERFERAKQEKSIVDFSDLEHYCLRILAKQDAEGNLIETEAAKYYQKQ
FEEVLVDEYQDTNLVQETILKLVSKGKHPAEGNRFMVGDVKQSIYRFRLAEPMLFLNKYKQFKADSKETGKRIDLNKNFR
SRADVLDSTNFLFKQLMGETVGEIEYDEQAELKLGASYPQSEDTTTEMLLVHLDQHDTESDEEREELETVQFEARVIAKK
IKELVEQPFQVYDAKQQLTRNLQYRDIVILLRSMPWAPQMMEELKKQGIPVYANLSSGYFEATEVSVILSLLKVIDNPYQ
DIPLAAVLRSPLVHLDENEMALIRTSDKKGTYYDAVKAFMSVTHSDHPTCRKLERFFLQLRKWRDFSIQHSVAELIWEVY
RDTQYLDYVGGMPGGKQRQANLRALYDRAKQYEKAAFRGLFRFLRFIERMQERGDDLGAAKTFSETEDVVRMITIHSSKG
LEFPVVFTAGLGRNFNMMDLNQSYLLDKELGFGSKYIHPELRISYATLPLIAMKKKMRKELLSEELRVLYVALTRAKEKL
FLVGSVKNQVKALSKWQNAASGDDWLLPDFERYQARTYLDFIGPALIRHQAMSSLLEESREVVLLHPSSFSITFHQASDL
LQEDMSLEKQKQDEVVQALMEGVPVQGYGDYEEEVKERLSWRYPYLAASQVGTKQSVSEIKRMKEIQDEYSVPSSIRKAH
ATLYERPAFMKKKTLTAAEQGTAMHTVMQHIPLPSNEPYDESRVEELLHSLKEKDLLTDEQIQSINREGIVAFFSTAIGQ
KLRKADWVKREVSFSMVLPVKEVYSHIDAEGEPVLIQGMIDCLFEADGKLYLLDYKTDRVTGRFSGGLEEAEAMLKKRYE
TQISLYTAAVERLTNRTLEEKILYFFDGNLEISL

Nucleotide


Download         Length: 3705 bp        

>NTDB_id=567430 KIV12_RS16495 WP_217967380.1 3233766..3237470(-) (addA) [Bacillus altitudinis strain LZP 02]
ATGCAAATACCAAAACCGAATAACAGTACTTGGACAGATGACCAATGGAACGCCATCGTTTCAGAAGGACAAGATATTCT
TGTTGCTGCGGCGGCAGGGTCAGGGAAAACAGCGGTCTTGGTTGAACGGCTCATTCGAAAAATGACTCGGCCGGAGCAGC
CAGTTGATGTGGACAGGCTGCTCGTAGTGACTTTTACCAATGCTTCAGCAGCAGAAATGAAGCACCGGATCACTGAAGCA
CTTGAAAAAGAACTATCTAAAAACCCTGGATCACTTCATATGCGGAGACAGCTGTCACTTATGAATCGTGCCAATATTTC
TACCTTGCACTCCTTTTGTTTGCAAGTTCTGCGCACTTTTTATTATGAGATTGACCTTGATCCAGGTTTTCGTTTGGCTG
ATCAAACAGAAGGAGAATTATTAGGAGATGAAGTGTTAGATGAACTGTTTGAGGATGAGTATAAGGCTGGAAAGCCGTCA
TTTTTTGAACTCGTTGATCGTTACACATCTGATCGGCATGATTTAGATCTTCAATGGCTTGTCAAAAGAATTTATGAGTT
TTCTAGGTCACATCCAGCGCCCGAACAATGGATGCGGGCATTCCTTTCTCTTTATGATGTGGATACACAGACAAAGGTAG
AAGAATTACCCTTTTATCCATATATCAAAGAGGACCTTTCTCTCGTTTTAAGAAGCTGTCAGGAACTGCTGGAACAAGCG
CTCACTTTGTCAAAAGAGCCGGGTGGTCCAGCACCGAGGGCGGAGAATTTTATAGATGATTTAGAGCAAGTAAATGAATT
AATAAGGCATCAAGATGATTTTGGAACACTTTATGAGCTTTTGCCAAATATCAATTTTAAAAGATTAAAGACTTGCAAAG
GGGATGACTATGACCCAGCTCTGTTAGAAAAAGCAACAGATGCACGCAATCAAGCCAAAAAACAATTAGAAAAGCTAAAA
GATGAATACTTTATGCGCAGTCCCGATCAGCATTTAAAAAGCTTGGCTGAAATGAAGCCAGTTGTAGAAACACTTGTAGA
GCTTGTGATTCAATATGGAGAGCGTTTCGAAAGAGCCAAACAAGAAAAATCAATCGTAGACTTTTCGGATCTAGAACATT
ATTGTTTGCGCATTTTAGCGAAGCAGGACGCAGAAGGAAATCTCATTGAAACAGAAGCGGCTAAATACTATCAAAAGCAA
TTTGAAGAAGTACTCGTGGATGAATACCAGGATACAAATCTTGTCCAAGAAACGATTTTAAAGCTCGTGTCTAAAGGGAA
ACATCCTGCAGAAGGCAACCGCTTTATGGTTGGTGATGTGAAGCAGTCCATTTATCGCTTTAGACTTGCAGAGCCGATGC
TCTTTTTAAATAAATATAAACAATTTAAAGCAGACAGCAAAGAAACAGGTAAAAGAATTGATCTAAATAAAAATTTCCGC
AGCCGGGCTGATGTATTAGACAGTACCAACTTTCTGTTCAAACAGCTGATGGGAGAAACAGTTGGAGAAATTGAATATGA
CGAACAAGCTGAATTAAAGCTTGGAGCGAGTTATCCGCAAAGCGAAGATACGACGACAGAAATGCTTCTTGTTCATTTAG
ATCAGCACGACACAGAAAGCGATGAAGAACGAGAAGAGCTAGAGACGGTACAATTTGAGGCGAGAGTGATTGCAAAGAAA
ATAAAAGAATTGGTAGAACAGCCTTTTCAAGTGTACGATGCAAAACAGCAGCTGACCCGCAACTTGCAGTATCGAGACAT
TGTGATCTTGCTTCGCTCAATGCCGTGGGCTCCGCAAATGATGGAAGAGTTGAAGAAGCAGGGAATCCCTGTTTATGCGA
ATCTTTCCTCAGGCTATTTTGAAGCGACAGAGGTATCGGTCATTCTTTCTTTGTTAAAAGTGATTGATAATCCATATCAA
GATATTCCGCTCGCTGCTGTTTTAAGGTCACCTCTTGTTCATTTAGACGAAAATGAGATGGCACTGATTAGAACAAGTGA
TAAAAAAGGCACTTATTATGACGCTGTGAAGGCATTTATGAGTGTGACACACTCTGATCATCCGACATGCAGAAAGCTGG
AGCGATTCTTCCTTCAATTACGCAAATGGCGTGATTTTTCGATTCAGCATTCGGTAGCAGAACTGATTTGGGAAGTGTAC
CGAGATACACAATATCTAGATTATGTCGGCGGGATGCCAGGAGGTAAGCAAAGACAGGCAAACCTTCGGGCTTTATATGA
TCGAGCGAAACAGTATGAAAAGGCTGCATTTAGAGGGCTGTTTCGATTTCTTCGATTTATTGAAAGAATGCAAGAGCGTG
GAGATGATCTTGGAGCGGCAAAAACGTTCAGTGAAACAGAGGATGTTGTCCGCATGATAACCATTCATAGCAGTAAAGGA
CTCGAATTCCCTGTTGTATTTACTGCAGGACTTGGCAGGAACTTTAACATGATGGATTTAAACCAGTCCTACTTGCTTGA
TAAAGAATTAGGTTTTGGCAGCAAATATATTCATCCTGAGCTGAGAATTAGTTATGCAACATTACCGCTGATCGCGATGA
AAAAAAAGATGAGAAAAGAGTTATTATCTGAAGAACTGAGGGTTCTATATGTGGCGCTCACAAGGGCGAAGGAAAAATTA
TTTTTAGTCGGCTCTGTCAAAAATCAAGTGAAAGCTTTAAGCAAGTGGCAAAATGCCGCAAGCGGAGACGACTGGCTCCT
CCCTGATTTTGAACGATATCAAGCGAGAACATACTTAGATTTTATTGGCCCAGCCCTTATCCGTCATCAAGCGATGTCTT
CTCTTTTAGAAGAATCGAGAGAAGTCGTTCTCTTGCATCCATCATCATTTTCTATCACCTTTCATCAAGCGTCCGATCTT
CTACAAGAAGACATGTCACTTGAAAAACAAAAACAAGACGAAGTGGTACAAGCATTAATGGAAGGTGTGCCTGTTCAAGG
ATATGGCGATTACGAGGAGGAAGTAAAAGAAAGACTTTCATGGCGTTATCCATATTTAGCGGCCTCCCAAGTAGGGACAA
AGCAGTCAGTTTCCGAGATCAAAAGAATGAAAGAAATACAGGATGAATACAGTGTGCCTTCTTCCATTCGAAAAGCTCAT
GCGACACTGTACGAACGACCGGCTTTTATGAAGAAAAAAACACTCACAGCCGCAGAACAAGGGACGGCCATGCATACAGT
CATGCAGCATATCCCTCTTCCTTCAAATGAACCATATGATGAATCTCGTGTAGAAGAGCTGCTCCATTCTTTAAAAGAGA
AAGACTTACTAACAGATGAACAAATTCAGTCCATCAATCGAGAAGGAATTGTGGCCTTCTTTTCTACTGCTATTGGTCAA
AAACTGCGGAAAGCGGACTGGGTGAAACGAGAAGTATCGTTTAGTATGGTTTTACCGGTTAAAGAGGTATATAGCCATAT
TGATGCAGAAGGTGAACCTGTGCTCATTCAAGGAATGATTGATTGTTTATTTGAAGCAGATGGCAAGCTCTATTTACTTG
ATTATAAAACAGATCGAGTGACTGGCAGATTCTCAGGTGGATTAGAGGAAGCTGAAGCGATGTTAAAAAAACGCTATGAA
ACGCAAATATCGTTGTATACAGCAGCGGTAGAACGTTTAACAAACAGAACATTAGAGGAGAAAATCCTTTATTTCTTTGA
TGGAAATCTAGAAATTTCTTTATAG


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

66.774

100

0.669