Detailed information    

insolico Bioinformatically predicted

Overview


Name   addB   Type   Machinery gene
Locus tag   ABN702_RS13625 Genome accession   NZ_CP158164
Coordinates   2673106..2676615 (-) Length   1169 a.a.
NCBI ID   WP_417897368.1    Uniprot ID   -
Organism   Bacillus sp. CSS-39     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 2668106..2681615
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  ABN702_RS13620 (ABN702_13595) addA 2669333..2673103 (-) 3771 WP_417900905.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  ABN702_RS13625 (ABN702_13600) addB 2673106..2676615 (-) 3510 WP_417897368.1 helicase-exonuclease AddAB subunit AddB Machinery gene
  ABN702_RS13630 (ABN702_13605) - 2676835..2677977 (+) 1143 WP_417897369.1 MFS transporter -
  ABN702_RS13635 (ABN702_13610) yidC 2678014..2678769 (-) 756 WP_417900906.1 membrane protein insertase YidC -
  ABN702_RS13640 (ABN702_13615) - 2678827..2679081 (-) 255 WP_417897370.1 hypothetical protein -
  ABN702_RS13645 (ABN702_13620) - 2679225..2680724 (-) 1500 WP_417897371.1 class I adenylate-forming enzyme family protein -

Sequence


Protein


Download         Length: 1169 a.a.        Molecular weight: 134598.87 Da        Isoelectric Point: 5.1775

>NTDB_id=1010041 ABN702_RS13625 WP_417897368.1 2673106..2676615(-) (addB) [Bacillus sp. CSS-39]
MSIRFLIGRTGSGKTKWCSDQILQQLKDNPEGPPIVYLVPEQMTFQSEYRMVQSPDIQGMIRAQVFSFTRLAWRILQEVG
GISRFHIDQTGIHMLLRKVVEEHKNEFQVFGRSAEQFGFIEQMESMVTEFKRYCVTPEQLQEEIVRIKDDSTISEHERML
AKKLTDILVVYRQLEHTLEGNYVDGEDYLQLLAEKIPFSSYIKQAEIFIDGFHSFTPQEVEVLKQLMVHARSVTVALTLD
KPYDEEAPYDLHLFRSTGTTYQKLRKIALEEGCEVEAPVLMEDAHRFMESDSLRHLEKYFDVRPTVAYPGKGEVSIMQAV
NRRAEIEGIAREITSLVRDKDNRYKDIAVIVRNAESYVDLINTVFKDYEIPFFIDQKRTMLHHPLVELLRSSIEVITRNW
RYESVFRCVKTDFFYSMDHDIEEMREKTDKLENYCLSYGIQGKRWTADKPWTYRRFFSIDTEGPYVQTDEELAYEQEINE
LRSMIVEPLLMLEKRWKRSKSIEGFCKALYEYMEDLGIPAKLENRMRKAEQAGNLSSSKENEQVWKAIIGMLDQMVELIG
DQSISMALFSKMLESGLESLRFSLVPPAIDQVIVANFDLSRLTDIKHSFVIGVNEGVIPAKIKDEGFVSEEERELLASFG
LELAPTSLERLLDDHFLVYSAFLSPSHQLYISYSLADEEGKSLLASSYIKRVKEMFPEVEERLMLNEPAELSQEEPLMFV
HTPGTTLSNLAVQLQAWMKKYPVDPVWWDVYNTLLEDEQWNGRTEQVLQSLFYRNEAKKLEACVSRKLYGDHMEASVSRM
EKFSSCAFSHFASHGLKLKDRQIYRLEAPDIGQLFHAALKTISDSLRQKGSDWKSLTKSECERLAKEAVNILAPKLQGEI
LLSSNRFQYIKRKLETIITRATQILSEHSRASKFTPVGLELGFGQKEELPPIRLDLPNGVSMELVGRIDRVDKAEGSNGL
LLRIIDYKSSNKALDLTEVYYGLALQMLTYLDIVISHSQGWLGTQASPAGVLYFHVHNPMIKTNGMAPEDIIEEEIFKSF
KMKGLLLGEEESVRLMDQTLDKGHSQIVSAGLKTNGEFYSNSSVASETEFTYLRNYVRKTFEDIGMKISEGETGIAPYKL
KNQTPCTFCSYKSFCQFDTSLDENDYRLLTNIPKDEIMESIKRKVEGGG

Nucleotide


Download         Length: 3510 bp        

>NTDB_id=1010041 ABN702_RS13625 WP_417897368.1 2673106..2676615(-) (addB) [Bacillus sp. CSS-39]
GTGTCGATTCGTTTTTTGATAGGAAGAACAGGAAGTGGAAAAACAAAATGGTGTAGCGATCAGATCCTTCAGCAGCTGAA
AGACAATCCGGAAGGACCTCCGATTGTCTATCTTGTTCCGGAACAGATGACCTTTCAATCGGAATATCGGATGGTTCAAT
CGCCTGATATACAGGGGATGATCCGGGCACAGGTATTCAGTTTTACCCGCCTTGCTTGGCGAATCCTGCAGGAGGTTGGG
GGAATCAGCCGTTTTCATATCGATCAGACCGGGATACATATGCTTCTTCGCAAGGTGGTCGAGGAGCATAAAAATGAGTT
TCAGGTGTTTGGCCGTTCTGCCGAGCAGTTTGGCTTTATTGAACAGATGGAAAGCATGGTAACGGAATTCAAGCGCTACT
GTGTGACTCCTGAGCAGCTACAGGAGGAGATTGTCCGTATCAAGGATGATAGCACCATTTCGGAACATGAAAGAATGCTC
GCCAAGAAGCTGACGGATATTTTGGTGGTTTACCGCCAATTGGAGCATACCCTTGAGGGCAATTATGTGGATGGAGAGGA
TTATCTGCAGCTGCTGGCTGAAAAGATCCCTTTTTCCTCCTATATAAAACAAGCAGAAATTTTTATAGATGGTTTTCATA
GCTTTACACCACAGGAAGTGGAGGTCCTGAAGCAACTTATGGTGCATGCCAGGTCTGTCACCGTTGCTCTTACATTGGAC
AAGCCCTATGACGAAGAGGCGCCATATGACCTCCATCTGTTCCGGTCAACTGGTACCACTTATCAGAAGCTGAGAAAAAT
TGCACTTGAAGAAGGATGCGAAGTGGAGGCGCCTGTTTTAATGGAGGATGCCCACCGCTTTATGGAATCAGATTCATTGC
GGCATTTGGAGAAATATTTTGACGTAAGACCTACTGTGGCTTATCCCGGTAAGGGCGAGGTCTCCATTATGCAGGCTGTA
AACAGAAGAGCGGAGATAGAAGGAATTGCAAGGGAAATCACATCGCTTGTTCGTGACAAGGATAACCGCTATAAGGATAT
TGCGGTTATTGTCCGCAATGCCGAGTCCTATGTGGATTTGATCAACACGGTTTTCAAAGATTATGAGATTCCCTTTTTCA
TCGATCAGAAACGTACGATGCTTCATCATCCGCTAGTGGAGCTCTTGCGTTCGAGTATCGAGGTCATCACACGTAACTGG
CGCTATGAGTCTGTTTTCCGCTGTGTAAAAACGGATTTCTTTTATTCGATGGATCATGATATAGAAGAGATGCGGGAGAA
GACGGACAAGCTGGAGAACTATTGCCTTTCCTATGGAATTCAGGGGAAAAGGTGGACGGCGGATAAACCTTGGACCTACC
GTCGTTTTTTCAGTATTGATACCGAAGGCCCATATGTGCAGACAGATGAAGAGCTTGCCTACGAACAGGAAATCAATGAA
CTGAGAAGTATGATTGTGGAGCCGCTCTTGATGCTTGAGAAGCGATGGAAGCGTTCGAAGTCCATTGAAGGCTTTTGCAA
GGCACTGTACGAATACATGGAGGACCTTGGAATTCCAGCGAAACTGGAGAACCGGATGAGAAAGGCTGAACAAGCTGGAA
ATCTATCATCCTCAAAAGAAAATGAGCAGGTGTGGAAAGCAATCATCGGAATGCTCGATCAGATGGTGGAACTGATTGGA
GATCAGTCTATTAGCATGGCATTGTTTTCAAAAATGCTGGAGAGTGGGTTGGAAAGCCTGCGCTTCAGTCTTGTACCGCC
AGCAATCGATCAGGTGATTGTGGCAAACTTTGATTTGTCGAGACTGACGGATATCAAGCACAGCTTTGTTATCGGAGTAA
ACGAAGGGGTCATTCCTGCCAAAATCAAGGATGAAGGCTTTGTTTCGGAGGAAGAGAGGGAGCTTCTCGCAAGCTTCGGA
CTGGAGCTTGCACCAACTAGCCTGGAAAGATTGCTAGATGACCATTTTCTTGTATATTCTGCTTTCCTTTCTCCTTCCCA
TCAGCTTTATATCAGCTATTCCCTGGCTGATGAAGAAGGGAAATCACTTTTGGCTTCCTCCTATATTAAGCGAGTGAAGG
AAATGTTCCCGGAGGTGGAGGAAAGGCTGATGTTGAATGAACCTGCGGAGCTATCCCAGGAGGAGCCGCTGATGTTTGTC
CATACCCCCGGCACTACGCTTTCCAATCTGGCGGTTCAGCTTCAGGCCTGGATGAAGAAATATCCGGTCGATCCGGTATG
GTGGGATGTGTATAACACCCTTCTTGAGGATGAACAATGGAACGGGCGAACCGAGCAGGTGCTTCAGAGCTTGTTCTATA
GAAATGAAGCGAAAAAGTTGGAAGCGTGCGTCAGCAGAAAGCTTTACGGCGATCATATGGAAGCCAGTGTATCAAGGATG
GAGAAATTCAGTTCCTGTGCTTTTTCACACTTCGCTTCCCACGGGTTGAAGCTGAAGGACAGGCAAATCTACCGTTTAGA
GGCGCCGGATATCGGGCAGCTGTTTCATGCAGCACTAAAAACCATTTCCGATAGTCTCAGACAAAAGGGCAGTGACTGGA
AGTCGTTGACGAAGTCTGAGTGTGAAAGGCTGGCAAAAGAGGCCGTAAATATTCTGGCACCTAAGCTGCAAGGGGAAATT
CTTTTAAGCTCCAACCGTTTCCAATATATAAAAAGAAAGCTTGAAACCATCATTACGAGAGCAACACAAATCCTGAGTGA
GCATTCAAGGGCAAGTAAATTCACGCCAGTTGGCCTTGAGCTTGGATTCGGCCAAAAGGAAGAGCTGCCTCCGATCAGGC
TGGATCTGCCTAACGGGGTATCCATGGAGCTTGTCGGGCGAATTGACCGTGTTGATAAGGCGGAGGGCTCCAATGGCTTG
CTGCTTCGGATCATCGACTATAAATCCAGCAACAAAGCTTTGGATCTGACAGAAGTGTACTATGGATTGGCCTTGCAGAT
GCTGACCTATCTGGATATCGTCATCTCCCATTCACAGGGGTGGCTTGGTACTCAGGCGTCACCGGCAGGGGTCCTTTATT
TTCATGTGCACAATCCAATGATCAAAACGAATGGGATGGCACCTGAGGATATCATTGAAGAGGAGATCTTCAAAAGCTTC
AAAATGAAGGGACTTCTTTTAGGAGAAGAGGAATCTGTCCGTCTCATGGATCAGACGCTTGATAAAGGGCACTCCCAAAT
TGTTTCCGCGGGATTGAAGACCAATGGGGAGTTCTATTCCAATTCCTCAGTAGCAAGTGAAACGGAATTCACCTATCTGA
GAAACTACGTGAGGAAGACCTTTGAAGACATCGGGATGAAAATATCAGAAGGTGAAACGGGCATTGCCCCTTACAAGCTG
AAAAATCAAACACCATGTACCTTCTGTTCCTATAAATCGTTCTGTCAATTTGATACCTCGCTTGACGAGAACGACTATAG
ATTGCTGACAAATATACCGAAGGATGAAATCATGGAATCCATCAAAAGAAAAGTGGAAGGAGGAGGTTAA


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

52.519

100

0.526


Multiple sequence alignment