Detailed information    

insolico Bioinformatically predicted

Overview


Name   addA   Type   Machinery gene
Locus tag   NON14_RS06720 Genome accession   NZ_CP101642
Coordinates   1348091..1351834 (-) Length   1247 a.a.
NCBI ID   WP_056947675.1    Uniprot ID   -
Organism   Latilactobacillus sakei strain HRB10     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 1343091..1356834
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  NON14_RS06705 (NON14_06690) asnS 1343228..1344526 (-) 1299 WP_011374616.1 asparagine--tRNA ligase -
  NON14_RS06710 (NON14_06695) - 1344637..1345113 (-) 477 WP_011374615.1 DUF5590 domain-containing protein -
  NON14_RS06715 (NON14_06700) - 1345191..1348025 (-) 2835 WP_409043091.1 helicase C-terminal domain-containing protein -
  NON14_RS06720 (NON14_06705) addA 1348091..1351834 (-) 3744 WP_056947675.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  NON14_RS06725 (NON14_06710) - 1351818..1355378 (-) 3561 WP_409043093.1 PD-(D/E)XK nuclease family protein -
  NON14_RS06730 (NON14_06715) mvk 1355659..1356606 (+) 948 WP_096585801.1 mevalonate kinase -

Sequence


Protein


Download         Length: 1247 a.a.        Molecular weight: 141766.78 Da        Isoelectric Point: 4.8355

>NTDB_id=610985 NON14_RS06720 WP_056947675.1 1348091..1351834(-) (addA) [Latilactobacillus sakei strain HRB10]
MAILSNPQFTPSQQAAVNHDGHDILVSASAGSGKTSVLVARVIQKILKGTDVDTLLVVTFTEAAATEMRQRIQAALRDAS
EKATEPAVKQRLRQQLSLVPTAQISTLHAFCLKVIKQFYYVIDRDPVFRLLSDTAERLLLADQVWQRVREAFYSHEYVEK
GTQDTLFYELAQNFSNDRNDDGLTDIVFELLDFANANPNPVKWLNELPKSYAVDETGLTASRYFQEKILPILQQTLTECL
EALQEAEQLSQTSENLMVYAPQITTTQAALTQIKADAKTLNWQAWRQQLTDAQLGPAKRTKKLEPDEQINKDRLKADLDD
VKKKIQTLLDTYFVFDEATTTNIQRQAGQLVQKLVRVTLTFREAFQAEKERRHLLDFSDLEQLCLTILSAEDSPARAFYQ
QKFSEVLVDEYQDTNPLQETIIQKVTSDHPRNLFMVGDVKQSIYAFRLADPSLFKNKYNEFGVTEAERDSERIILAENFR
SRRNIDDFTNLIFKQLMDENLGELDYDENAALQYGARYYPDQHPTAPTELLLYETKPEEAVANPQLDKSEGQVVAVAKRI
QAMMTNGEQIWDKKLEKMRPIEYRDIVLLAPTRGNNLFILDYFKRFGLPVVIKDAQNYFQTTEVQIMLALLQVIDNPNQD
IPLVSVLRSPIVGLNENELALIRINDKTDDYYQAVFNFIDQYNEQKVGHLGQQVMQKLTHFMALLTSFRTIARQQPIVDL
IWTIYQETGFLDYVGGMPAGRQRQANLHALYERATAYEENGFKGLFQFIQFIERLQKQDKDLAQPTSLENQDAISVMTIH
GSKGLEFPVVFLIDTSRRFNQQDLQRSYVLDNHGGLGVVYLDSQKRLKVPTLPELAITAQKRKKLRAEEMRKLYVALTRA
EQWLIIVGHCDNQAQLMKQWQKGQNSTHQILDDGVRNDAASLLDWIGLSLIRHPQAKDWITDYEPLLALSGDQTEFKLIM
TNEALLGEIPGSLHNDQDWGQQQQKALQTIDLNSGIATAIAEQLTFKYPANVATQTTAYQSVSEVKRLFEDPDNTGLGQL
DLAAEQPRQANRYVTDSLAQPQFLQTVQQPTAAEVGTATHLVLQEIDLTQPVTLASLQGLVDRLVLQNSLSANVAAKINL
NHLLTFFESDLGQQLLAHPEAVKREVPFSLLLPAETIFEGIRPTDDDHVLIHGIMDGYLLTDDGCYLFDYKTDFIDPSDQ
EAAIERVKNRYAGQINLYSAALNQIVQKPVTHKYLYLLSIGELVEIN

Nucleotide


Download         Length: 3744 bp        

>NTDB_id=610985 NON14_RS06720 WP_056947675.1 1348091..1351834(-) (addA) [Latilactobacillus sakei strain HRB10]
ATGGCAATCTTGAGTAACCCGCAATTTACACCTTCACAGCAAGCGGCTGTCAATCATGACGGCCACGATATTTTAGTATC
CGCATCAGCTGGTTCAGGGAAGACATCCGTCCTGGTTGCCCGGGTCATCCAGAAAATCTTAAAAGGCACCGATGTCGACA
CCTTGCTTGTTGTGACTTTTACGGAAGCCGCTGCTACTGAAATGCGCCAACGGATTCAAGCCGCACTACGCGATGCCAGT
GAGAAAGCGACCGAGCCAGCTGTTAAACAACGTTTACGGCAACAACTGAGTCTCGTGCCAACCGCACAAATCAGTACGCT
GCATGCTTTTTGTTTAAAAGTCATTAAACAATTTTATTACGTGATTGACCGTGATCCCGTATTCCGCTTATTGAGTGATA
CTGCAGAACGACTCCTCTTAGCGGATCAAGTATGGCAACGGGTGAGAGAAGCATTCTACAGCCACGAGTATGTTGAAAAG
GGCACCCAAGACACCTTATTTTACGAATTGGCCCAAAATTTCTCGAATGATCGTAACGATGACGGCCTAACCGACATTGT
TTTTGAGTTGCTCGATTTTGCAAATGCCAATCCAAACCCGGTTAAATGGTTAAACGAACTACCCAAAAGCTATGCTGTTG
ATGAGACTGGTTTGACTGCCAGTCGCTATTTCCAAGAAAAAATATTACCGATATTACAGCAAACACTCACCGAATGCTTA
GAAGCTTTACAAGAAGCTGAACAGCTCAGTCAAACTAGCGAAAATCTGATGGTTTATGCGCCTCAAATTACCACTACGCA
AGCAGCCTTAACACAAATCAAAGCAGATGCCAAAACGTTAAATTGGCAAGCATGGCGCCAACAACTAACGGATGCCCAGC
TAGGACCTGCTAAACGCACTAAGAAATTAGAGCCTGATGAACAAATTAATAAAGACCGTCTGAAAGCCGATTTAGATGAT
GTCAAAAAGAAAATCCAAACGTTATTAGACACTTATTTTGTGTTTGATGAAGCAACCACCACTAATATTCAGCGCCAAGC
TGGCCAGTTGGTCCAAAAATTGGTGCGCGTCACGTTAACTTTCAGAGAAGCCTTTCAAGCCGAAAAAGAACGACGCCATT
TATTGGACTTTAGTGATTTAGAACAACTCTGTCTGACAATTTTATCGGCAGAAGATTCACCAGCAAGAGCCTTTTACCAA
CAAAAATTTAGCGAAGTGCTAGTTGATGAATACCAAGATACCAATCCGCTCCAAGAAACGATTATCCAAAAGGTCACTTC
TGATCATCCACGCAATCTCTTCATGGTCGGGGATGTTAAGCAGTCAATTTATGCTTTCCGATTGGCCGATCCAAGCTTAT
TTAAGAATAAGTATAACGAATTTGGTGTCACGGAAGCTGAACGTGATAGTGAACGAATCATCTTAGCTGAAAACTTCCGT
TCGCGCCGCAATATCGATGACTTTACCAATCTGATTTTTAAACAATTAATGGACGAAAATCTTGGTGAATTAGACTATGA
CGAAAATGCCGCCTTACAATATGGTGCTCGTTATTATCCTGACCAGCACCCAACCGCGCCAACCGAACTCTTGCTTTATG
AAACTAAGCCGGAAGAGGCAGTTGCCAACCCGCAATTAGATAAGAGTGAGGGCCAAGTCGTGGCGGTCGCTAAACGGATT
CAAGCCATGATGACTAATGGGGAACAGATTTGGGATAAGAAACTCGAAAAAATGCGGCCGATTGAATATCGGGACATCGT
TTTACTAGCCCCAACCCGCGGTAATAATTTGTTTATCCTGGATTACTTTAAACGCTTCGGCTTGCCGGTTGTGATTAAGG
ATGCGCAAAATTATTTCCAAACGACTGAAGTCCAAATTATGTTAGCCCTACTTCAGGTGATTGATAATCCTAACCAAGAT
ATTCCACTGGTCAGTGTTTTACGCTCACCAATTGTCGGGTTAAACGAAAATGAATTGGCATTAATTCGGATTAACGATAA
GACGGATGATTATTATCAAGCGGTCTTTAACTTTATTGACCAATATAATGAGCAGAAAGTCGGCCACTTAGGCCAACAAG
TGATGCAGAAGCTGACGCACTTCATGGCTTTATTGACGTCGTTTAGAACAATCGCTCGTCAACAACCGATTGTGGACTTA
ATTTGGACGATCTACCAAGAAACTGGCTTTTTAGATTATGTCGGGGGGATGCCAGCTGGACGTCAACGTCAAGCTAATTT
ACACGCGCTTTATGAACGTGCCACGGCGTATGAAGAAAATGGTTTTAAAGGACTCTTCCAGTTCATTCAGTTTATCGAAC
GTCTTCAAAAACAAGATAAGGATTTAGCACAACCAACGAGCTTAGAAAATCAAGACGCCATCTCTGTTATGACCATTCAC
GGGAGTAAGGGACTTGAATTTCCAGTCGTCTTTTTAATCGATACTAGTCGCCGCTTTAACCAACAGGATTTACAACGCTC
ATATGTTTTGGATAATCATGGTGGTTTAGGGGTCGTTTATTTAGATAGCCAAAAGCGGTTGAAGGTACCAACACTGCCAG
AATTAGCGATTACCGCCCAGAAACGAAAAAAATTACGAGCAGAAGAAATGCGAAAACTATACGTTGCTTTGACACGTGCG
GAACAATGGTTAATCATCGTTGGCCATTGTGATAACCAGGCCCAATTGATGAAGCAATGGCAAAAAGGGCAAAATAGTAC
CCACCAAATATTAGATGATGGTGTTCGCAACGATGCCGCAAGTTTACTGGACTGGATAGGTCTTAGCTTAATTCGCCATC
CACAAGCTAAAGATTGGATCACTGATTATGAGCCACTACTGGCTTTAAGTGGTGATCAAACCGAGTTTAAGTTGATTATG
ACTAATGAAGCCTTACTTGGTGAAATACCAGGTAGCCTGCATAACGATCAGGACTGGGGGCAACAACAGCAAAAGGCACT
TCAAACAATTGATTTAAACAGTGGGATAGCAACAGCGATTGCTGAGCAATTAACCTTTAAGTATCCCGCTAATGTTGCGA
CCCAAACGACGGCTTATCAATCTGTTTCGGAAGTCAAACGCCTTTTTGAAGACCCTGATAATACCGGATTGGGACAATTA
GACCTAGCGGCTGAACAACCGCGCCAAGCAAATCGCTACGTAACGGATAGCTTAGCGCAACCACAGTTCTTACAAACCGT
TCAACAACCAACGGCAGCAGAAGTGGGGACCGCAACGCATTTGGTCTTGCAAGAAATTGATTTAACGCAACCAGTAACGC
TAGCGAGTTTGCAAGGTCTTGTCGATCGACTTGTTTTACAGAATAGTTTAAGCGCCAATGTTGCGGCTAAGATTAATCTT
AATCACCTATTAACCTTCTTTGAAAGTGACTTGGGACAGCAATTATTAGCCCATCCAGAAGCGGTTAAGCGGGAAGTGCC
ATTTTCGTTGTTATTACCAGCAGAAACGATTTTTGAAGGCATTCGTCCCACAGATGACGACCACGTCCTAATCCATGGGA
TTATGGATGGTTATTTATTGACTGACGACGGTTGTTATTTATTTGATTACAAAACCGACTTTATTGACCCCAGTGATCAA
GAAGCGGCGATTGAACGGGTTAAAAACCGCTATGCTGGCCAGATTAACCTCTATAGCGCTGCTTTAAATCAGATTGTCCA
AAAGCCAGTGACCCATAAATATCTTTATTTATTGTCAATTGGCGAACTGGTTGAGATTAACTAG


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

37.52

100

0.383