Detailed information    

insolico Bioinformatically predicted

Overview


Name   addA   Type   Machinery gene
Locus tag   D9Y32_RS00390 Genome accession   NZ_CP033218
Coordinates   75845..79537 (-) Length   1230 a.a.
NCBI ID   WP_011197743.1    Uniprot ID   Q65LJ9
Organism   Bacillus licheniformis strain TCCC 11148     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 70845..84537
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  D9Y32_RS00375 (D9Y32_00375) - 70947..71165 (+) 219 WP_142782039.1 spore germination protein -
  D9Y32_RS00380 (D9Y32_00380) sbcC 71210..74602 (-) 3393 WP_061576187.1 exonuclease subunit SbcC -
  D9Y32_RS00385 (D9Y32_00385) sbcD 74599..75780 (-) 1182 WP_073426309.1 exonuclease subunit SbcD -
  D9Y32_RS00390 (D9Y32_00390) addA 75845..79537 (-) 3693 WP_011197743.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  D9Y32_RS00395 (D9Y32_00395) addB 79524..83024 (-) 3501 WP_009328899.1 helicase-exonuclease AddAB subunit AddB Machinery gene
  D9Y32_RS00400 (D9Y32_00400) modB 83134..83790 (-) 657 WP_009328900.1 molybdate ABC transporter permease subunit -

Sequence


Protein


Download         Length: 1230 a.a.        Molecular weight: 141090.95 Da        Isoelectric Point: 5.5198

>NTDB_id=322690 D9Y32_RS00390 WP_011197743.1 75845..79537(-) (addA) [Bacillus licheniformis strain TCCC 11148]
MEISKPKGSTWTDDQWKAIVSSGRDILVAAAAGSGKTAVLVERIIRKITDQERPVDVDRLLVVTFTNASAAEMKHRIGEA
LEKELAENPGSLHLRRQLALLNKASISTLHSFCLQVIRKYYYLIDVDPAFRIADQTEGELLGDEVLDELFEEEYKKGNPA
FFELVDRYTTDRHDLDLQHLVKRVYEFSRSHPDPEGWLHSLAELYDAASDTKVEALPFYSYIKEDIALVLEGMRQKLTRA
LDLTKQPGGPAPRAENFLDDLAQIDRLIQQQDDFSALHELVPTVSFQRLKPCKGDEYDPRLVDEAADLRNSAKKQLEKLK
SDYFSRTPEQHLESLREMKPVIQTLVQLVLEYGRRFAEAKKEKAIVDFSDLEHDCLAILSVKNPAGEAVPSEAAKFYRHQ
FHEVLVDEYQDTNLVQEAILKLVAKEEHEGNLFMVGDVKQSIYRFRLAEPLLFLSKYKRFTDDGSGSGQKIDLNKNFRSR
SDILDSTNFLFKQLMGEKVGEVEYDEQAELKLGASYPPNEATKTELLLIETPSGAPGEEAEELEAVQLEARAMAGQIRRL
ITEKFQVYDAKAKASRNIQYRDIVVLLRSMPWAPQIMDEFKQQGIPVYANLSTGYFEATEVSVTLSLLKIIDNAYQDIPL
ASVLRSPVVGLDENELSLIRIKDKKAPFYEAMKAYLAAADGDERLSEKLRRFDGLLKKWRAYAKNHSVAELIWEIYRDTK
YLDYVGGMPGGKQRQANLRALYDRARSYEATSFRGLFRFLRFIERMQERGDDLGTARALSEQEDVVRLMTIHSSKGLEFP
VVFTAGLGRNFNMMDLNKSYLLDKELGFGTKFIHPKWRISYPTLPLIAMKKKLRRELLSEELRVLYVALTRAKEKLYLVG
TAKDKEKLLADWRTQAAGSEWLLPDYERFQAKSYLDFIGPALMRHRDMDESGAPPVIDEIREHPARFQVSWLSAADLQAE
AVDQAGEERHDRLVQIQMGHAIEGAFEYEQQVRERLAWSYPYKDAAKVRTKQSVSEMKRQKEYEDEYGDRSLIRPSQEAL
LFKRPSFMMAKGLTAAERGTAMHTVMQHIPLTRTPEKNELSRLLDRLVEKELLTEDQRAAIEEDDILAFFDTEIGQKLFG
ARRVEREVPFNMTLSAKEVYPDLESADEPVLIQGIIDCLFETEDGFYLLDYKTDRIHGKYRNGFEGAEPILRKRYETQIQ
LYARAVETMIKMPLKGRALYFFDGGHVLLF

Nucleotide


Download         Length: 3693 bp        

>NTDB_id=322690 D9Y32_RS00390 WP_011197743.1 75845..79537(-) (addA) [Bacillus licheniformis strain TCCC 11148]
ATGGAGATTTCTAAACCGAAGGGCAGCACCTGGACTGATGACCAATGGAAGGCGATTGTCTCATCCGGCCGGGACATTTT
AGTTGCGGCAGCGGCCGGTTCCGGAAAAACGGCCGTGCTGGTTGAACGGATCATTCGGAAAATAACGGATCAGGAACGAC
CGGTAGATGTCGACAGGCTGCTCGTCGTCACCTTTACAAATGCATCTGCGGCTGAAATGAAGCACAGGATCGGCGAAGCG
CTCGAAAAAGAGCTTGCCGAAAATCCGGGATCGCTTCATTTGCGCCGACAGCTTGCTTTATTAAACAAAGCGAGCATATC
AACATTGCATTCATTCTGTCTTCAAGTCATCCGCAAATATTACTATTTGATCGATGTCGATCCGGCTTTCCGGATCGCCG
ATCAGACGGAAGGCGAGCTGCTCGGCGATGAGGTGCTGGATGAACTGTTTGAAGAAGAATACAAAAAAGGCAATCCTGCC
TTTTTTGAACTTGTAGACAGATATACGACAGACCGTCATGACCTCGACCTGCAGCATCTTGTCAAGCGGGTCTACGAATT
TTCCCGTTCGCATCCCGATCCGGAGGGCTGGCTTCACTCATTGGCTGAACTGTATGACGCGGCTTCGGATACGAAGGTTG
AGGCTCTGCCGTTTTATTCTTACATTAAAGAAGACATCGCACTCGTTCTGGAAGGTATGCGGCAAAAGCTGACGCGCGCG
CTTGATTTGACAAAGCAGCCCGGGGGGCCTGCTCCGCGCGCCGAAAATTTTCTCGATGATTTAGCGCAGATCGACAGGCT
GATTCAGCAGCAGGATGATTTTTCGGCCCTGCATGAGCTTGTACCGACCGTTTCGTTTCAACGATTGAAGCCATGCAAAG
GTGATGAGTACGATCCCAGATTGGTTGATGAGGCGGCAGACCTCCGCAACAGTGCGAAAAAGCAGCTTGAAAAGCTGAAA
AGCGATTATTTTTCGCGAACTCCGGAGCAGCACCTTGAGAGCCTGAGGGAAATGAAGCCTGTCATTCAGACGCTTGTCCA
GCTCGTGCTGGAGTATGGCAGGCGGTTTGCGGAAGCGAAAAAGGAAAAGGCGATCGTCGATTTTTCAGACCTTGAACACG
ACTGCCTTGCGATTTTATCCGTGAAAAATCCGGCGGGCGAGGCCGTGCCGAGCGAAGCGGCGAAGTTTTACCGCCATCAG
TTCCACGAAGTGCTTGTTGATGAATACCAGGATACGAACCTGGTCCAGGAAGCGATTTTAAAGCTCGTCGCCAAAGAGGA
GCATGAGGGGAACCTGTTTATGGTGGGCGATGTCAAGCAGTCGATTTACCGGTTCCGCCTGGCTGAGCCGCTTTTGTTCC
TCTCGAAATATAAACGCTTTACAGACGATGGCTCGGGTTCCGGCCAGAAAATCGATTTAAATAAAAACTTCAGAAGCCGT
TCAGATATTTTGGACAGCACGAACTTTTTATTCAAACAGCTCATGGGAGAAAAAGTCGGGGAAGTCGAGTATGACGAACA
AGCCGAATTGAAGCTCGGCGCCTCTTATCCGCCGAACGAAGCGACAAAAACGGAGCTTCTGCTCATCGAAACCCCGAGCG
GCGCGCCGGGTGAAGAGGCTGAAGAGCTTGAGGCGGTCCAGCTTGAAGCAAGAGCGATGGCCGGGCAGATCCGCAGGCTG
ATTACAGAAAAATTTCAAGTATATGATGCCAAAGCGAAAGCGTCGCGAAACATCCAGTACCGTGATATCGTGGTGCTTTT
GCGGTCGATGCCTTGGGCGCCTCAAATTATGGACGAGTTTAAACAGCAGGGAATACCCGTATACGCGAACCTCTCAACTG
GTTATTTTGAGGCGACAGAAGTATCGGTCACACTGTCTTTATTAAAAATCATCGATAATGCCTATCAGGACATCCCGCTT
GCGTCCGTTCTCAGATCGCCTGTTGTGGGTCTTGATGAGAATGAGCTTTCCTTGATCAGAATCAAAGATAAAAAAGCGCC
GTTTTACGAAGCCATGAAAGCGTACCTTGCTGCAGCAGACGGCGATGAGAGGCTCAGCGAAAAGCTTCGCCGCTTTGACG
GTCTGCTCAAGAAGTGGAGAGCTTATGCGAAAAACCACTCTGTAGCAGAGCTGATCTGGGAAATCTACCGGGATACGAAG
TATTTGGATTATGTCGGCGGAATGCCGGGCGGAAAACAGCGGCAGGCCAATTTGCGCGCGCTTTACGACAGGGCGAGATC
CTATGAAGCGACATCATTCCGCGGCTTGTTCCGCTTTTTAAGATTTATTGAGCGGATGCAGGAGCGGGGCGATGACCTCG
GAACGGCAAGGGCTCTAAGCGAACAGGAAGACGTTGTTCGGCTGATGACGATCCACTCAAGCAAAGGGCTTGAATTTCCT
GTCGTATTTACCGCCGGTCTCGGACGGAATTTTAATATGATGGACTTGAACAAATCTTATCTGCTGGATAAAGAGCTCGG
TTTTGGAACGAAGTTTATCCATCCGAAGTGGCGGATCAGCTATCCGACGCTGCCGCTTATCGCGATGAAGAAAAAACTCC
GCCGCGAGCTTTTATCAGAGGAGCTGCGCGTCTTGTATGTCGCCCTTACCCGGGCCAAGGAAAAGCTGTACCTGGTCGGG
ACGGCGAAGGATAAAGAAAAGCTGCTTGCCGACTGGCGGACACAAGCGGCCGGGTCCGAGTGGCTGCTCCCGGATTATGA
ACGGTTTCAGGCAAAATCATATCTGGATTTCATCGGACCTGCTTTGATGAGGCACAGAGATATGGATGAATCCGGGGCGC
CGCCTGTGATTGATGAGATCCGCGAACATCCGGCGCGCTTTCAGGTCAGCTGGCTGTCCGCCGCGGATCTACAAGCTGAG
GCTGTCGATCAGGCCGGTGAAGAAAGACACGACCGGCTCGTCCAAATTCAAATGGGCCATGCGATTGAAGGCGCCTTTGA
ATATGAGCAGCAAGTCAGAGAACGACTGGCATGGTCATATCCATACAAGGACGCCGCCAAAGTCAGAACAAAACAATCTG
TCTCAGAAATGAAACGGCAGAAGGAATACGAGGATGAATACGGCGACCGCTCGCTTATTCGTCCATCACAGGAGGCTCTC
CTGTTTAAACGGCCGTCCTTTATGATGGCAAAAGGCCTGACCGCAGCCGAACGGGGGACGGCGATGCACACCGTCATGCA
GCATATTCCGCTGACCCGTACGCCTGAAAAGAATGAGCTCAGCCGCCTTCTAGACAGGCTTGTTGAGAAAGAGCTGTTAA
CAGAAGACCAGCGGGCAGCGATTGAAGAAGACGACATTCTTGCATTCTTTGATACGGAAATCGGACAAAAGCTTTTCGGC
GCCCGCCGCGTCGAACGGGAGGTTCCCTTTAACATGACGCTGTCCGCTAAAGAGGTTTATCCGGATCTTGAGTCAGCCGA
TGAACCTGTTTTGATACAGGGAATTATCGACTGCCTATTCGAGACGGAGGACGGTTTTTACCTTCTAGATTACAAAACCG
ACCGGATACACGGAAAGTACCGGAACGGCTTCGAAGGGGCCGAGCCGATTTTAAGAAAACGTTACGAAACACAAATTCAG
CTTTACGCACGAGCCGTTGAAACGATGATTAAAATGCCGCTCAAAGGGCGCGCGCTGTACTTTTTTGACGGAGGACACGT
GCTCTTATTTTAA


Secondary structure


Protein secondary structures were predicted by S4PRED and visualized by seqviz.



3D structure


Source ID Structure
  AlphaFold DB Q65LJ9

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

71.707

100

0.717


Multiple sequence alignment