Detailed information    

insolico Bioinformatically predicted

Overview


Name   addA   Type   Machinery gene
Locus tag   QTA68_RS05890 Genome accession   NZ_CP129005
Coordinates   1161919..1165644 (+) Length   1241 a.a.
NCBI ID   WP_290102243.1    Uniprot ID   -
Organism   Bacillus cereus strain lycx     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 1156919..1170644
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  QTA68_RS05875 (QTA68_05875) - 1157077..1157670 (+) 594 WP_000347517.1 TVP38/TMEM64 family protein -
  QTA68_RS05880 (QTA68_05880) lepB 1157727..1158290 (+) 564 WP_000751919.1 signal peptidase I -
  QTA68_RS05885 (QTA68_05885) addB 1158407..1161922 (+) 3516 WP_000058600.1 helicase-exonuclease AddAB subunit AddB Machinery gene
  QTA68_RS05890 (QTA68_05890) addA 1161919..1165644 (+) 3726 WP_290102243.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  QTA68_RS05895 (QTA68_05895) - 1165657..1165944 (+) 288 WP_000255728.1 RNA polymerase alpha subunit C-terminal domain-containing protein -
  QTA68_RS05900 (QTA68_05900) gerPF 1166077..1166292 (-) 216 WP_001141566.1 spore germination protein GerPF -
  QTA68_RS05905 (QTA68_05905) - 1166336..1166722 (-) 387 WP_000902333.1 spore germination protein GerPE -
  QTA68_RS05910 (QTA68_05910) gerPD 1166738..1166932 (-) 195 WP_001052807.1 spore germination protein GerPD -
  QTA68_RS05915 (QTA68_05915) gerPC 1166939..1167553 (-) 615 WP_025709865.1 spore germination protein GerPC -
  QTA68_RS05920 (QTA68_05920) gerPB 1167621..1167827 (-) 207 WP_001012508.1 spore germination protein GerPB -
  QTA68_RS05925 (QTA68_05925) gerPA 1167842..1168063 (-) 222 WP_001111187.1 spore germination protein GerPA -
  QTA68_RS05930 (QTA68_05930) - 1168160..1168339 (-) 180 WP_000462841.1 aspartyl-phosphate phosphatase Spo0E family protein -
  QTA68_RS05935 (QTA68_05935) - 1168587..1169486 (+) 900 WP_290102244.1 fumarylacetoacetate hydrolase family protein -
  QTA68_RS05940 (QTA68_05940) - 1169522..1169803 (-) 282 WP_000926857.1 hypothetical protein -

Sequence


Protein


Download         Length: 1241 a.a.        Molecular weight: 142671.89 Da        Isoelectric Point: 4.8146

>NTDB_id=850400 QTA68_RS05890 WP_290102243.1 1161919..1165644(+) (addA) [Bacillus cereus strain lycx]
MIENWPKKPEGSQWTDDQWKAVVANGRDILVAAAAGSGKTAVLVERIIKKIINEENPVDVDRLLVVTFTNAAAQEMKNRI
GEALEKVLIDEPGSQHVRKQLSLLNKASISTIHSFCLQVIRGYYYMLDVDPRFRIANQTENELLKEEVLDDILEEEYGIE
DNTIFFELVDRYTSDRSDDDLQRMILALHTESRAHPNPEKWLDKLVEAYDVEGKTIEDLVYASYLLEDVKFQLETAEQHI
RKATELAMLPDGPAPRIETLQADVALLGTLSSAARESWTSVYEAMQNVSWQTLKRIKKSDYNEDVVKQVDSLRNKAKDEV
KKLQEELFSRKPESFLRDFQDMHPVLEKLVQLVKVFTERFQAIKRDKGMVDFTDLEHFCLQILSEQSENGEMNPSAVALQ
YRNKFAEVLVDEYQDTNFVQESIIKFVTKDSESEGNLFMVGDVKQSIYRFRLAEPGLFLGKYKRFTQEGLGGGMKIDLAK
NFRSRHEVLAGTNFIFKQIMGEEVGEIDYDADAELKLGATYPEGEDVAAELLCIQQTEEEVIDGEEGAEVEKAQLEARLM
AQRIKAMVDSGYEVYDRKNDSMRPVQYRDFVILLRSMPWAPQIMEELKLQGIPVYADLATGYFEATEVNIMMNVFRVIDN
PMQDIPLAAVLRSPIVGLSDEELATLRAHGKKGSFYEVMSSFLKGAPLEEEQELHDKLEWFYNLLQGWREFARQQSLSDL
IWKVYGETGYYDFVGGLPAGKQRQANLRVLYDRARQYEATSFRGLFRFLRFIERILERGDDMGTARALGEQEDVVRIMTI
HKSKGLEFPVVFVAGLGRRFNTQDLMKRFLLHKDFGFGSQFIDPRKRIKYTTLSQLAIKRKMKMELIAEEMRVLYVALTR
AKEKLILIGTVKDANKEMEKWLDAREHSEWLLPDHIRAGASCYLDWIAPSLYRHRDSEMLLELGQGSIPDEIYGYDTSWK
VEVVDGNTLLAPEPVQEEKQELLEALREKKAVPLQSERKEEVYDRLMWKYGYEDATSHRAKQSVTEIKRNYQSEEGSDNA
FIKKLRAPIKTRPRFMEKKGLTYAERGTAVHAVMQHVDLKKPITIEVLQEQIAGMVNKELLTFEQAEEIAIEKVISFFDS
DLGKRVLAAKSVEREVPFTMMLAAEEAYQDWQGKSGEMILVQGVIDCMIEEEDGITLIDFKTDTIEGKFPGGFEQAKPIL
EDRYKVQLSLYAKALEKSLQHPVKEKCLYFFDGNHVVNIEE

Nucleotide


Download         Length: 3726 bp        

>NTDB_id=850400 QTA68_RS05890 WP_290102243.1 1161919..1165644(+) (addA) [Bacillus cereus strain lycx]
ATGATAGAAAATTGGCCTAAAAAACCAGAAGGTAGTCAATGGACAGATGACCAGTGGAAAGCTGTTGTAGCAAACGGGCG
TGATATTTTAGTTGCGGCTGCAGCTGGATCAGGTAAAACAGCAGTATTAGTTGAACGTATTATTAAAAAGATTATTAATG
AAGAGAATCCAGTCGATGTCGACCGCCTGCTCGTTGTAACATTTACGAATGCAGCAGCGCAAGAGATGAAAAACCGAATC
GGGGAAGCGTTAGAAAAGGTATTAATTGATGAACCAGGCTCTCAACACGTAAGAAAGCAGCTGAGCCTATTAAATAAAGC
TTCCATTTCAACAATTCACTCATTCTGTTTACAAGTAATTAGAGGATATTACTACATGCTTGATGTTGATCCTCGTTTCC
GTATTGCGAATCAAACAGAAAATGAATTGTTAAAAGAAGAAGTGCTAGATGACATATTAGAAGAAGAGTACGGAATCGAA
GATAATACAATCTTCTTTGAACTTGTTGATCGTTATACGAGTGACCGTAGTGATGATGACTTACAACGTATGATTTTAGC
GCTTCATACAGAGTCAAGAGCGCATCCAAATCCGGAAAAATGGCTTGATAAATTAGTAGAAGCATATGACGTAGAAGGAA
AGACAATTGAAGATTTAGTGTATGCTTCTTATTTATTAGAAGATGTGAAATTCCAGCTTGAAACAGCGGAACAGCATATT
CGTAAGGCAACTGAACTCGCAATGCTTCCTGACGGTCCAGCGCCTCGCATTGAAACCCTGCAAGCAGATGTAGCATTACT
TGGAACGCTATCATCAGCTGCTCGTGAGTCATGGACAAGTGTGTATGAAGCGATGCAAAACGTATCGTGGCAAACGTTAA
AGCGTATTAAGAAAAGTGATTACAATGAAGATGTTGTAAAACAAGTAGACTCTCTTCGTAATAAAGCGAAAGATGAAGTG
AAGAAATTACAAGAAGAGTTATTTAGCCGCAAACCTGAAAGTTTCTTACGAGATTTTCAAGATATGCACCCAGTATTAGA
AAAGCTTGTTCAACTTGTAAAAGTATTTACAGAGCGTTTCCAAGCGATAAAGAGAGATAAAGGAATGGTCGATTTCACAG
ATTTAGAGCATTTCTGTTTACAAATTTTAAGTGAACAAAGTGAAAATGGTGAAATGAATCCGTCAGCAGTGGCGCTCCAA
TATCGTAATAAATTTGCTGAAGTATTAGTCGATGAATATCAAGATACGAATTTCGTACAAGAATCGATTATTAAATTCGT
AACGAAAGATTCTGAGAGTGAAGGAAACTTGTTCATGGTTGGTGACGTAAAGCAGTCGATTTATCGTTTCCGACTAGCCG
AGCCAGGACTATTCCTAGGAAAATATAAACGCTTCACACAAGAAGGATTAGGCGGCGGAATGAAGATTGACTTAGCGAAA
AACTTCCGTAGTCGTCATGAAGTACTAGCAGGTACGAACTTTATTTTCAAACAAATTATGGGCGAAGAAGTTGGGGAAAT
TGACTACGATGCTGACGCCGAACTAAAGCTAGGTGCTACCTATCCAGAAGGTGAAGATGTAGCAGCAGAATTATTATGTA
TTCAGCAAACGGAAGAAGAAGTAATAGACGGTGAAGAAGGTGCAGAAGTCGAAAAAGCACAGCTTGAAGCTCGCCTTATG
GCGCAGCGCATTAAAGCGATGGTTGATTCCGGTTATGAAGTGTATGACCGTAAAAATGATAGTATGCGTCCGGTGCAATA
CCGCGATTTCGTTATTTTACTTCGCTCCATGCCGTGGGCCCCGCAAATTATGGAAGAGTTAAAATTACAAGGAATTCCAG
TATACGCTGACCTCGCGACTGGTTATTTTGAAGCGACGGAAGTAAATATTATGATGAACGTATTCCGCGTTATTGATAAT
CCGATGCAAGATATTCCGCTTGCCGCTGTACTTCGTTCCCCAATCGTTGGATTGAGCGATGAAGAACTTGCAACGCTTCG
TGCTCATGGAAAGAAAGGCTCGTTTTATGAAGTAATGAGCTCATTCTTAAAAGGGGCACCGCTTGAAGAGGAGCAAGAAC
TTCATGATAAATTAGAGTGGTTTTATAACTTACTGCAAGGATGGCGTGAATTTGCACGTCAACAATCACTTTCTGATTTA
ATTTGGAAAGTGTACGGTGAGACAGGTTATTACGACTTCGTTGGCGGTTTACCAGCTGGAAAGCAAAGGCAGGCAAACTT
ACGCGTACTATATGACCGCGCAAGACAATATGAAGCAACATCATTTAGAGGATTATTCCGCTTCTTACGTTTTATTGAAC
GTATTTTAGAACGCGGTGATGATATGGGTACGGCGAGGGCTCTAGGTGAACAAGAAGACGTTGTTCGCATTATGACAATT
CATAAAAGTAAAGGGTTAGAGTTCCCAGTTGTATTTGTAGCTGGACTCGGTCGTCGTTTTAATACACAAGACTTAATGAA
ACGTTTCTTATTGCATAAAGATTTCGGTTTCGGTTCGCAATTTATCGATCCGCGTAAACGAATTAAATATACAACATTAT
CACAGCTTGCGATTAAGCGTAAAATGAAAATGGAATTAATTGCGGAAGAAATGCGCGTACTATACGTAGCATTGACGCGT
GCGAAAGAGAAGTTAATTTTAATCGGCACAGTTAAGGATGCAAATAAGGAAATGGAAAAATGGCTTGATGCGAGGGAACA
TAGTGAATGGTTATTACCAGATCACATACGTGCCGGAGCGTCTTGTTATTTAGACTGGATTGCACCTTCATTATATAGAC
ACCGTGATAGTGAAATGCTTCTTGAATTAGGACAAGGAAGTATTCCAGATGAAATTTACGGGTATGACACTAGCTGGAAA
GTAGAAGTTGTGGACGGTAACACGCTACTTGCACCAGAGCCAGTTCAAGAAGAGAAACAAGAATTGTTGGAAGCGCTTCG
TGAGAAAAAGGCTGTTCCCCTGCAAAGTGAACGGAAAGAAGAAGTGTACGACAGATTAATGTGGAAGTACGGATATGAGG
ATGCGACATCTCATCGTGCGAAGCAATCTGTTACAGAAATAAAGAGAAATTATCAATCTGAAGAAGGTAGCGATAACGCC
TTTATTAAAAAACTACGTGCACCAATTAAAACACGCCCGCGATTTATGGAGAAAAAAGGGTTAACGTACGCAGAGCGCGG
AACAGCAGTCCATGCCGTTATGCAGCATGTTGATTTGAAGAAGCCGATTACGATTGAGGTTCTTCAAGAGCAAATTGCTG
GAATGGTAAATAAGGAATTATTAACATTCGAGCAGGCGGAAGAAATAGCGATTGAAAAAGTAATTTCATTCTTTGACAGT
GACTTAGGTAAAAGGGTATTAGCGGCGAAAAGTGTTGAGCGTGAAGTACCATTTACGATGATGCTTGCAGCAGAAGAAGC
ATATCAAGATTGGCAAGGGAAGAGCGGGGAAATGATTCTTGTCCAAGGGGTTATCGACTGCATGATTGAAGAGGAAGATG
GCATTACGTTAATCGACTTTAAAACAGATACGATTGAAGGGAAATTCCCAGGCGGATTCGAACAAGCGAAACCAATTTTA
GAAGATCGATATAAAGTGCAGCTTTCGTTATATGCAAAAGCACTGGAGAAAAGCTTACAACATCCTGTAAAAGAGAAATG
TTTATACTTCTTTGATGGGAATCACGTTGTAAATATTGAAGAATAG


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

53.328

100

0.536