Detailed information    

insolico Bioinformatically predicted

Overview


Name   addB   Type   Machinery gene
Locus tag   XI92_RS07640 Genome accession   NZ_CP011349
Coordinates   1495793..1499308 (-) Length   1171 a.a.
NCBI ID   WP_000058598.1    Uniprot ID   A0A9W5QJU2
Organism   Bacillus thuringiensis strain YC-10     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 1490793..1504308
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  XI92_RS07620 (XI92_07620) - 1490990..1491376 (+) 387 WP_000902319.1 spore germination protein GerPE -
  XI92_RS07625 (XI92_07625) gerPF 1491419..1491634 (+) 216 WP_001141566.1 spore germination protein GerPF -
  XI92_RS07630 (XI92_07630) - 1491772..1492059 (-) 288 WP_000255727.1 RNA polymerase alpha subunit C-terminal domain-containing protein -
  XI92_RS07635 (XI92_07635) addA 1492072..1495796 (-) 3725 Protein_1516 helicase-exonuclease AddAB subunit AddA -
  XI92_RS07640 (XI92_07640) addB 1495793..1499308 (-) 3516 WP_000058598.1 helicase-exonuclease AddAB subunit AddB Machinery gene
  XI92_RS07645 (XI92_07645) lepB 1499425..1499988 (-) 564 WP_000751910.1 signal peptidase I -
  XI92_RS07650 (XI92_07650) - 1500045..1500638 (-) 594 WP_000347518.1 TVP38/TMEM64 family protein -
  XI92_RS07655 (XI92_07655) - 1500974..1501555 (-) 582 WP_000444439.1 competence protein ComK -
  XI92_RS07660 (XI92_07660) - 1501840..1502025 (+) 186 WP_000391373.1 hypothetical protein -
  XI92_RS07665 (XI92_07665) - 1502374..1502577 (+) 204 WP_000356923.1 hypothetical protein -
  XI92_RS07670 (XI92_07670) cspA 1502775..1502978 (-) 204 WP_000301518.1 RNA chaperone/antiterminator CspA -
  XI92_RS07675 (XI92_07675) - 1503262..1503756 (+) 495 WP_000182395.1 DUF6584 family protein -

Sequence


Protein


Download         Length: 1171 a.a.        Molecular weight: 134140.38 Da        Isoelectric Point: 5.1777

>NTDB_id=144982 XI92_RS07640 WP_000058598.1 1495793..1499308(-) (addB) [Bacillus thuringiensis strain YC-10]
MSLRFVIGRAGSGKSTLCLREVQEELKQRPRGKTILYLVPEQMTFQTQQALIGSEDVRGSIRAQVFSFSRLAWKVLQEVG
GASRLHIDEAGVHMLLRKIVESRKDGLSVFQKAAEQNGFFEHLGSMIAEFKRYNVTPSNVYEMWQQLDAHSSSAEQKLLA
NKVYDLQLLYDDFERALIGKYLDSEDYLQLLVEKLPQSEYVNGAEIYIDGFHSFSPQELEIVRQLMICGARVTITLTIDE
KTLAQPVNELDLFYETTLTYEKIKQVAREEKIEIEKTIPLMEQPRFHSPALAHLEAHYEARPNEKFNGEASVTISTAANL
RAEVEGVAREIRKLVAEENYRYRDIAVLLRNGESYYDVMRTLFTDYNIPHFIDEKRPMSHHPLVECIRSALEIISGNWRY
DAVFRCVKTELLYPLDVRKETMREEMDEFENYCLAYGVQGKRWTSEDPWMYRRYRSLDDTNGMITDSEREMEEKINRLRD
VVRTPVIRMQKRLKRAGTVMQMCEAVYLFLEELDVPKKLEELRIRAEESGDFLFATDHEQVWEEVMSLLDTFVEMLGEEK
MSLSMFTDVMSTGLEALQFANIPPSLDQVLIANIDHSRLSDVKATFIIGVNEGVIPAAPMDEGMLSDEEREVLGAAGIEL
APTTRQTLLEEQFVMYQMVTRASEKLYISCPLADEEGKTLLASSFIKKIKRMFPNVKDSFITNDVNDLSRSEQISYVATP
EVTLSYVMQQLQTWKRYGFEGNLDFWWDVYNFYVTSDEWKQKSSRVLSSLFYRNRAKKLSTAVSRDLYGDIIKGSVSRME
LFNRCAYAHFAQHGLSLRERDIFKLDAPDIGELFHAALKKIADKLLRENRTWADLSIKECEHLSVLVIEEIAPLLQRQIL
LSSNRHFYLKQKLQQIIFRTSIILREHAKSSGFVPVDLEVPFGMGGTGSLPPMEFSLPNGVKMEVVGRIDRVDKAEDENG
TFLRIIDYKSSSKALDLTEVYYGLALQMLTYLDVVTSNAQTWMKKGHAASPAGVLYFHIHNPIVEMKGDASEAEIEKEIL
KKFKMKGLVLGDADVVRLMDNKLSTGSSDIISAGLKKDGSFSARSSIASEQEFNVLQKYVHHTFENIGKDITEGVIDIAP
YKMGNKAACTFCNFKSVCQFDESLEDNQFRSLKDMKDSEAMEKIREEVGGE

Nucleotide


Download         Length: 3516 bp        

>NTDB_id=144982 XI92_RS07640 WP_000058598.1 1495793..1499308(-) (addB) [Bacillus thuringiensis strain YC-10]
ATGTCACTTCGATTTGTGATTGGTAGAGCGGGAAGTGGAAAAAGTACACTTTGTTTACGCGAAGTGCAAGAAGAGTTAAA
ACAACGCCCGAGAGGGAAAACAATATTATATCTTGTGCCAGAACAGATGACATTCCAGACGCAGCAGGCGTTAATTGGAA
GTGAGGATGTAAGAGGTTCTATTCGGGCACAAGTTTTTAGTTTTTCACGATTAGCGTGGAAGGTACTACAAGAAGTTGGC
GGAGCGAGTCGTCTTCATATTGATGAAGCGGGTGTACATATGTTACTCCGTAAAATTGTAGAGTCTCGTAAAGATGGATT
ATCGGTGTTCCAAAAAGCAGCGGAGCAAAACGGTTTCTTTGAACATCTTGGCAGTATGATTGCAGAGTTTAAACGTTACA
ATGTAACGCCATCTAACGTATATGAAATGTGGCAACAATTGGATGCGCATAGTAGCAGTGCCGAACAAAAGTTACTAGCG
AATAAAGTGTATGATTTACAGCTATTATACGATGATTTTGAACGTGCTTTAATTGGAAAATATTTAGATTCAGAAGACTA
CCTACAATTGCTAGTGGAAAAGCTTCCGCAGTCTGAATATGTAAATGGTGCGGAAATTTATATAGATGGATTTCATTCAT
TTTCCCCGCAAGAGTTAGAGATTGTAAGACAGCTTATGATTTGCGGAGCGAGAGTTACGATCACGTTAACGATAGATGAA
AAAACGTTAGCACAGCCAGTAAATGAACTCGATTTATTTTATGAAACGACGTTAACGTATGAAAAAATCAAACAAGTAGC
GCGTGAAGAGAAAATAGAAATTGAAAAAACAATTCCACTTATGGAACAGCCGCGTTTTCATTCTCCGGCATTAGCGCATT
TAGAAGCTCATTATGAAGCGCGTCCGAATGAAAAATTTAACGGTGAAGCGAGTGTAACGATTAGTACAGCTGCGAATTTA
CGAGCAGAGGTAGAAGGTGTTGCGCGTGAAATTCGTAAACTTGTGGCGGAGGAAAACTATCGTTACCGAGATATTGCGGT
TCTTCTTCGTAATGGGGAAAGTTATTACGATGTGATGCGAACGTTATTTACAGATTATAATATCCCACACTTCATCGATG
AAAAGCGCCCGATGTCACACCACCCATTAGTAGAATGTATTCGTTCTGCACTCGAGATTATTAGTGGGAATTGGCGTTAT
GATGCGGTGTTCCGCTGCGTGAAAACAGAGCTTTTATATCCATTAGACGTAAGAAAAGAAACGATGCGTGAAGAAATGGA
TGAATTTGAAAATTACTGTTTAGCGTACGGTGTACAAGGAAAGAGGTGGACTTCAGAGGATCCATGGATGTATCGCCGTT
ATCGTTCTCTTGATGATACGAACGGGATGATCACAGATAGTGAACGTGAAATGGAAGAGAAAATAAATCGATTGCGTGAC
GTTGTAAGAACACCTGTTATTCGCATGCAAAAAAGGTTAAAGCGTGCAGGAACAGTTATGCAAATGTGTGAAGCAGTTTA
CTTATTTCTAGAAGAGCTGGATGTTCCGAAAAAACTAGAAGAATTACGTATACGTGCAGAAGAAAGTGGAGATTTCTTAT
TTGCGACAGATCATGAACAAGTATGGGAAGAAGTAATGAGCCTTCTTGATACGTTTGTAGAGATGCTTGGTGAAGAGAAA
ATGTCTCTTTCTATGTTTACGGACGTTATGTCGACAGGTCTTGAGGCACTTCAATTTGCTAACATTCCGCCGTCATTAGA
CCAAGTGTTAATTGCTAATATTGATCACTCCAGGTTATCTGACGTGAAAGCAACGTTTATTATAGGTGTAAATGAGGGTG
TTATTCCAGCAGCACCTATGGACGAAGGTATGCTTTCTGATGAAGAAAGAGAAGTTCTTGGTGCAGCAGGGATTGAATTA
GCGCCAACGACGAGACAAACTTTGTTAGAAGAACAGTTCGTTATGTATCAAATGGTAACGAGAGCATCTGAGAAGTTATA
TATTTCATGCCCGCTTGCAGATGAAGAAGGAAAGACGTTACTTGCGTCTAGCTTTATTAAGAAAATAAAAAGAATGTTCC
CTAATGTGAAAGATTCATTTATTACCAATGACGTAAACGATTTATCACGTTCAGAACAAATTTCATACGTAGCAACGCCA
GAAGTAACGTTATCTTACGTTATGCAGCAACTACAAACGTGGAAGCGATACGGATTTGAAGGGAATTTAGACTTTTGGTG
GGACGTATATAATTTCTACGTAACTTCAGATGAATGGAAACAAAAAAGTAGCCGCGTCTTATCAAGTTTATTCTATCGAA
ATCGTGCGAAGAAACTAAGTACAGCAGTAAGTAGAGATTTATACGGAGATATAATTAAAGGAAGCGTCTCTCGTATGGAA
CTATTTAACCGTTGTGCATACGCTCATTTTGCGCAGCACGGTTTATCGCTTAGAGAGCGTGATATTTTCAAGCTTGATGC
GCCGGACATCGGCGAATTATTCCATGCGGCATTAAAGAAAATTGCGGACAAGCTATTGCGTGAAAACCGTACTTGGGCGG
ATTTATCCATAAAAGAGTGTGAGCATCTTTCTGTTTTAGTAATAGAAGAAATCGCACCGTTATTACAACGACAAATTTTA
TTAAGTTCAAACCGTCATTTCTATTTAAAACAAAAACTACAACAAATCATTTTCCGTACGTCAATCATTCTTCGTGAACA
TGCGAAGTCAAGCGGATTCGTACCAGTTGATTTAGAAGTGCCGTTCGGTATGGGTGGTACAGGATCACTTCCGCCGATGG
AATTCTCATTACCAAATGGTGTGAAGATGGAAGTTGTCGGCCGTATTGACCGTGTTGATAAGGCAGAAGATGAAAACGGG
ACGTTCTTACGTATTATTGATTATAAATCAAGTTCAAAAGCGTTAGATTTAACGGAAGTGTATTACGGATTAGCACTTCA
AATGTTAACGTATTTAGATGTTGTTACTTCGAATGCGCAGACGTGGATGAAAAAAGGTCACGCAGCATCACCAGCTGGTG
TATTGTATTTCCATATTCATAACCCAATCGTTGAGATGAAAGGTGACGCATCTGAAGCTGAAATTGAAAAAGAAATTTTA
AAGAAATTTAAAATGAAAGGACTCGTATTAGGAGATGCTGACGTTGTTCGTTTAATGGATAACAAACTTTCAACAGGAAG
TTCAGATATTATTTCTGCTGGCCTGAAAAAAGACGGTAGCTTTAGTGCGCGTTCAAGTATTGCAAGTGAGCAAGAGTTTA
ACGTACTGCAAAAATATGTACACCATACGTTTGAAAATATCGGAAAAGATATTACAGAAGGTGTTATCGATATTGCTCCT
TATAAAATGGGAAATAAAGCAGCATGTACGTTCTGTAACTTCAAATCTGTTTGTCAATTTGATGAGTCACTTGAAGATAA
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