Detailed information    

insolico Bioinformatically predicted

Overview


Name   addB   Type   Machinery gene
Locus tag   DDE73_RS10015 Genome accession   NZ_CP044978
Coordinates   1910123..1913638 (+) Length   1171 a.a.
NCBI ID   WP_107992256.1    Uniprot ID   -
Organism   Bacillus thuringiensis strain BT62     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 1905123..1918638
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  DDE73_RS09980 (DDE73_09985) - 1905581..1906075 (-) 495 WP_098584194.1 DUF6584 family protein -
  DDE73_RS09985 (DDE73_09990) cspA 1906358..1906561 (+) 204 WP_000301522.1 RNA chaperone/antiterminator CspA -
  DDE73_RS09990 (DDE73_09995) - 1906759..1906962 (-) 204 WP_000356916.1 hypothetical protein -
  DDE73_RS09995 (DDE73_10000) - 1907306..1907491 (-) 186 WP_075677594.1 hypothetical protein -
  DDE73_RS10000 (DDE73_10005) - 1907776..1908357 (+) 582 WP_000444443.1 competence protein ComK -
  DDE73_RS10005 (DDE73_10010) - 1908793..1909386 (+) 594 WP_000347517.1 TVP38/TMEM64 family protein -
  DDE73_RS10010 (DDE73_10015) lepB 1909443..1910006 (+) 564 WP_000751919.1 signal peptidase I -
  DDE73_RS10015 (DDE73_10020) addB 1910123..1913638 (+) 3516 WP_107992256.1 helicase-exonuclease AddAB subunit AddB Machinery gene
  DDE73_RS10020 (DDE73_10025) addA 1913635..1917360 (+) 3726 WP_103621612.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  DDE73_RS10025 (DDE73_10030) - 1917373..1917660 (+) 288 WP_000255728.1 RNA polymerase alpha subunit C-terminal domain-containing protein -
  DDE73_RS10030 (DDE73_10035) gerPF 1917798..1918013 (-) 216 WP_001141566.1 spore germination protein GerPF -
  DDE73_RS10035 (DDE73_10040) - 1918056..1918442 (-) 387 WP_000902324.1 spore germination protein GerPE -

Sequence


Protein


Download         Length: 1171 a.a.        Molecular weight: 134195.51 Da        Isoelectric Point: 5.2516

>NTDB_id=391100 DDE73_RS10015 WP_107992256.1 1910123..1913638(+) (addB) [Bacillus thuringiensis strain BT62]
MSLRFVIGRAGSGKSTLCLREVQEELKQRPRGKTILYLVPEQMTFQTQQALIGSEDVRGSIRAQVFSFSRLAWKVLQEVG
GASRLHIDEAGVHMLLRKIVESRKDGLSVFQKAAEQNGFFEHLGSMIAEFKRYNVTPSNVYEMWQQLDAHSSSAEQKLLA
NKVYDLQLLYDDFERALIGKYLDSEDYLQLLVEKLPQSEYVNGAEIYIDGFHSFSPQELEIVRQLMICGARVTITLTIDE
KTLAQPVNELDLFYETTLTYEKIKQVAREEKIEIEKTIPLMEQRRFHSPALAHLEAHYEARPNEKFNGEASVTISTAANL
RAEVEGVAREIRKLVADEKYRYRDIAVLLRNGESYYDVMRTLFTDYNIPHFIDEKRPMSHHPLVECIRSALEIISGNWRY
DAVFRCVKTELLYPLDVRKEAMREEMDEFENYCLAYGVQGKRWTAEDPWMYRRYRSLDDTNGMITDSEREMEEKINRLRD
VVRTPVIRMQKRLKRAGTVMQMCEAVYLFLEELDVPKKLEELRIRAEESGDFLFATDHEQVWEEVMSLLDTFVEMLGEEK
MSLSMFTDVMSTGLEALQFANIPPSLDQVLIANIDHSRLSDVRATFIIGVNEGVIPAAPMDEGMLSDEEREVLGAAGIEL
APTTRQTLLEEQFVMYQMVTRASEKLYISCPLADEEGKTLLASSFIKKIKRMFPNVKDSFITNDVNDLSRSEQISYVATP
EVTLSYVMQQLQTWKRYGFEGNLDFWWDVYNFYVTSDEWKQKSSRVLSSLFYRNRAKKLSTAVSRDLYGDIIKGSVSRME
LFNRCAYAHFAQHGLSLRERDIFKLDAPDIGELFHAALKKIADKLLRENRTWADLSIKECEHLSVLVIEEIAPLLQRQIL
LSSNRHFYLKQKLQQIIFRTSIILREHAKSSGFVPVDLEVPFGMGGTGSLPPMEFSLPNGVKMEVVGRIDRVDKAEDENG
TFLRIIDYKSSSKALDLTEVYYGLALQMLTYLDVVTSNAQTWMKKGHAASPAGVLYFHIHNPIVEMKGDATEAEIEKEIL
KKFKMKGLVLGDADVVRLMDNKLSTGSSDIISAGLKKDGSFSARSSIASEQEFNVLQKYVHHTFENIGKDITEGVIDIAP
YKMGNKAACTFCNFKSVCQFDESLEDNQFRSLKDMKDSEAMEKIREEVGGE

Nucleotide


Download         Length: 3516 bp        

>NTDB_id=391100 DDE73_RS10015 WP_107992256.1 1910123..1913638(+) (addB) [Bacillus thuringiensis strain BT62]
ATGTCACTTCGATTTGTGATTGGTAGAGCGGGAAGTGGAAAAAGTACACTTTGTTTACGCGAAGTGCAAGAAGAGTTAAA
ACAACGCCCGAGAGGGAAAACAATATTATATCTTGTGCCAGAACAGATGACATTCCAGACGCAGCAGGCGTTAATTGGAA
GTGAGGATGTAAGAGGTTCTATTCGGGCACAAGTTTTTAGTTTTTCACGATTAGCGTGGAAGGTACTGCAAGAAGTTGGC
GGAGCGAGTCGTCTTCATATTGATGAAGCTGGTGTACATATGTTACTCCGTAAAATTGTAGAGTCTCGTAAAGATGGATT
ATCGGTGTTCCAAAAAGCAGCGGAGCAAAACGGTTTCTTTGAACATCTTGGTAGTATGATTGCAGAGTTTAAACGTTACA
ATGTAACGCCATCTAACGTATATGAAATGTGGCAACAATTAGATGCGCATAGTAGCAGTGCCGAACAAAAGTTACTAGCG
AATAAAGTGTATGATTTACAGCTGTTATACGATGATTTTGAACGTGCTTTAATTGGAAAATATTTAGATTCAGAAGACTA
CCTGCAATTGCTAGTGGAAAAGCTTCCGCAGTCTGAATATGTAAATGGTGCGGAAATTTATATAGACGGATTTCATTCAT
TCTCCCCGCAAGAGTTAGAGATTGTAAGACAGCTTATGATTTGCGGAGCGAGAGTTACGATCACGTTAACGATAGATGAA
AAAACGTTAGCGCAGCCAGTAAATGAACTCGATTTATTTTATGAAACGACGTTAACGTATGAAAAAATAAAACAAGTAGC
GCGTGAAGAGAAAATAGAAATTGAAAAAACAATTCCACTTATGGAACAGCGGCGTTTTCATTCTCCGGCATTAGCGCATT
TAGAAGCTCATTATGAAGCGCGTCCGAATGAAAAATTTAACGGTGAAGCGAGTGTAACGATTAGTACAGCTGCGAATTTA
CGAGCGGAGGTAGAAGGTGTTGCTCGTGAAATTCGTAAACTTGTTGCGGATGAAAAATATCGTTACCGAGATATTGCAGT
GCTTCTTCGTAATGGGGAAAGTTATTACGATGTGATGCGAACGTTATTTACAGATTACAATATCCCGCACTTCATCGATG
AAAAGCGCCCAATGTCACACCACCCATTGGTAGAATGTATTCGTTCTGCACTCGAGATTATTAGTGGGAATTGGCGTTAT
GATGCGGTGTTCCGCTGCGTGAAAACAGAGCTTTTATATCCATTAGACGTAAGAAAAGAAGCGATGCGTGAAGAAATGGA
TGAATTTGAAAATTACTGTTTAGCGTACGGTGTACAAGGAAAGAGATGGACTGCTGAAGATCCATGGATGTATCGCCGTT
ATCGTTCTCTTGATGATACGAACGGGATGATTACAGACAGTGAACGTGAAATGGAAGAGAAAATAAATAGGCTACGTGAC
GTTGTAAGAACACCTGTTATTCGCATGCAAAAAAGGTTAAAGCGTGCAGGAACAGTTATGCAAATGTGTGAAGCAGTTTA
CTTGTTTTTAGAAGAACTGGATGTTCCGAAAAAACTAGAAGAATTACGTATACGTGCAGAAGAAAGTGGAGATTTCTTAT
TTGCGACAGATCATGAACAAGTATGGGAAGAAGTAATGAGCCTTCTTGATACATTTGTAGAGATGCTTGGGGAAGAAAAA
ATGTCTCTTTCTATGTTTACTGACGTTATGTCGACTGGTCTTGAGGCACTTCAATTTGCTAACATTCCGCCGTCATTAGA
CCAAGTGTTAATTGCTAATATTGATCACTCCAGATTATCTGATGTGAGAGCAACGTTTATTATAGGTGTAAATGAGGGTG
TCATTCCAGCAGCACCTATGGATGAAGGTATGCTTTCTGATGAGGAAAGAGAAGTTCTTGGTGCGGCAGGGATTGAATTA
GCGCCAACGACGAGACAAACTTTGTTAGAAGAACAGTTCGTTATGTATCAAATGGTAACGAGAGCATCTGAGAAGTTATA
CATTTCATGCCCGCTTGCAGATGAAGAAGGAAAGACGTTACTTGCGTCTAGCTTTATTAAGAAAATAAAAAGAATGTTCC
CTAATGTGAAAGATTCATTTATTACGAATGACGTAAATGATTTATCACGTTCAGAACAAATTTCATATGTAGCAACGCCA
GAAGTAACGTTATCTTACGTTATGCAGCAACTACAAACGTGGAAGCGATACGGATTTGAAGGGAATTTAGACTTTTGGTG
GGACGTATATAATTTCTACGTAACTTCAGATGAATGGAAACAAAAAAGTAGCCGCGTCTTATCAAGTTTATTCTATCGAA
ATCGTGCGAAGAAACTAAGTACAGCAGTAAGTAGAGATTTATACGGAGATATAATTAAAGGAAGCGTCTCTCGTATGGAA
CTATTTAATCGTTGTGCATACGCTCATTTTGCGCAGCACGGTTTATCGCTTAGAGAGCGTGATATTTTCAAGCTTGATGC
GCCAGACATCGGCGAATTATTCCATGCGGCATTAAAGAAAATTGCGGACAAGTTATTGCGTGAAAACCGCACTTGGGCGG
ATTTATCCATAAAAGAGTGTGAGCATCTTTCTGTTTTAGTAATAGAAGAAATTGCGCCTTTATTACAACGACAAATTTTA
TTAAGTTCAAACCGTCATTTCTATTTAAAACAAAAACTACAACAAATCATTTTCCGTACGTCAATCATTCTTCGTGAACA
TGCGAAGTCAAGCGGATTCGTACCAGTTGATTTAGAGGTGCCGTTCGGTATGGGAGGTACAGGGTCACTTCCGCCGATGG
AATTCTCATTACCAAATGGTGTAAAGATGGAAGTAGTCGGCCGTATTGACCGTGTTGATAAGGCAGAAGATGAAAACGGG
ACGTTCTTACGTATTATTGATTATAAATCAAGTTCAAAAGCGTTAGATTTAACGGAAGTGTATTACGGATTAGCACTTCA
AATGTTAACGTATTTAGATGTTGTTACTTCGAATGCACAGACGTGGATGAAAAAAGGCCACGCAGCATCACCAGCTGGTG
TATTGTATTTCCATATTCATAACCCAATCGTTGAGATGAAAGGTGACGCAACGGAAGCTGAAATTGAAAAAGAAATTTTA
AAGAAATTTAAAATGAAAGGACTCGTATTAGGAGATGCTGACGTTGTTCGTTTAATGGATAACAAACTTTCAACAGGAAG
CTCAGATATTATTTCTGCTGGCCTGAAAAAAGACGGTAGCTTTAGTGCGCGTTCAAGTATTGCAAGTGAGCAAGAGTTTA
ACGTACTGCAAAAATATGTACACCATACGTTTGAAAATATCGGAAAAGATATTACAGAAGGTGTTATCGATATTGCTCCT
TATAAAATGGGGAATAAAGCGGCATGTACGTTCTGTAACTTCAAATCTGTTTGTCAGTTTGATGAGTCACTGGAAGATAA
TCAGTTCCGATCGTTAAAAGATATGAAAGATAGCGAAGCGATGGAGAAAATAAGAGAGGAGGTTGGCGGAGAATGA


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
  addB Bacillus subtilis subsp. subtilis str. 168

49.488

100

0.495


Multiple sequence alignment