Detailed information    

insolico Bioinformatically predicted

Overview


Name   addA   Type   Machinery gene
Locus tag   P5653_RS06540 Genome accession   NZ_CP120610
Coordinates   1270957..1274649 (+) Length   1230 a.a.
NCBI ID   WP_043054269.1    Uniprot ID   -
Organism   Bacillus paralicheniformis strain DSM 28591     
Function   homologous recombination; plasmid transformation (predicted from homology)   
Homologous recombination

Genomic Context


Location: 1265957..1279649
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  P5653_RS06530 (P5653_06530) modB 1266704..1267360 (+) 657 WP_035339021.1 molybdate ABC transporter permease subunit -
  P5653_RS06535 (P5653_06535) addB 1267470..1270970 (+) 3501 WP_043054268.1 helicase-exonuclease AddAB subunit AddB Machinery gene
  P5653_RS06540 (P5653_06540) addA 1270957..1274649 (+) 3693 WP_043054269.1 helicase-exonuclease AddAB subunit AddA Machinery gene
  P5653_RS06545 (P5653_06545) sbcD 1274715..1275896 (+) 1182 WP_003180431.1 exonuclease subunit SbcD -
  P5653_RS06550 (P5653_06550) sbcC 1275893..1279285 (+) 3393 WP_043054270.1 exonuclease subunit SbcC -
  P5653_RS06555 (P5653_06555) - 1279330..1279548 (-) 219 WP_016885923.1 spore germination protein -

Sequence


Protein


Download         Length: 1230 a.a.        Molecular weight: 141295.14 Da        Isoelectric Point: 5.4195

>NTDB_id=806811 P5653_RS06540 WP_043054269.1 1270957..1274649(+) (addA) [Bacillus paralicheniformis strain DSM 28591]
MEISKPKGSNWTDDQWKAIVSSGRDILVAAAAGSGKTAVLVERIIRKITDQEHPVDVDRLLVVTFTNASAAEMKHRIGEA
LEKELAENPGSLHLRRQLALLNKASISTLHSFCLQVIRKYYYLIDVDPAFRIADQTEGELLGDEVLDELFEEEYKKQDPA
FFELVDRYTTDRHDLDLQHLVKRVYEFSRSHPDPEGWLHTFVDLYDAASDTKVEALPFYSYIKEDIALVLEGMRQKLTRA
LDLTKQPGGPAPRAENFLDDLAQIDRLIQQQNDFSALYELVPAVSFQRLKPCKGDAYDPRLVDEAADLRNSAKKQLEKLK
SDYFTRTPEQHLESLREMKPVIQTLVQLVLEYGKRFADAKKEKAIVDFSDLEHDCLAILSGKNQAGEAVPSEAAKFYRHQ
FHEVLVDEYQDTNLVQEAILKFVAKEEHEGNLFMVGDVKQSIYRFRLAEPLLFLSKYKRFTDDGSGSGQKIDLNKNFRSR
SDILDSTNFLFKQLMGEKVGEVEYDEQAELKLGASYPSNEATKTELLLIENQSGAQDEEAEELEAVQLEARAMAGQIRRL
ITEKFQVYDAKAKASRNIQYRDIVVLLRSMPWAPQIMDEFKQQGIPVYANLSTGYFEATEVSVTLSLLKIIDNAYQDIPL
ASVLRSPVVGLDENELSLIRIKDKKAPFYEAMKAYLAAADGDERLSEKLRRFDALLKKWRAYAKNHSVAELIWEIYRDTK
YLDYVGGMPGGKQRQANLRALYDRARSYEATSFRGLFRFLRFIERMQERGDDLGTARALSEQEDVVRLMTIHSSKGLEFP
VVFTAGLGRNFNMMDLNKSYLLDKELGFGTKFIHPKWRISYPTLPLIAMKKKLRRELLSEELRVLYVALTRAKEKLYLVG
TAKDKEKLLADWRSQAAGSEWLLPDYERFQAKSYLDFIGPALMRHRDMDESGAPLVIDEIREHPARFQVSWLSAADLQAE
DIDQAGEERHGRLSQIQMGLPIDGSFEYEQQVRERLTWSYPYKDAAKVRTKQSVSEMKRQKEYEDEYGDRSLIRPTKDAL
LFKRPSFMMVKGLTAAERGTAMHTVMQHIPLTRALEMNELSRLLDRLVEKELLTEDQRAAIEEDDILAFFDTEIGQKLLG
ARRVEREVPFNMTLSAKEVYPDLESADEPVLIQGIIDCLFETEDGFYLLDYKTDRIHGKYRNGFEGAEPILRKRYETQIQ
LYARAVETMIKMPLKGRALYFFDGGHVLLF

Nucleotide


Download         Length: 3693 bp        

>NTDB_id=806811 P5653_RS06540 WP_043054269.1 1270957..1274649(+) (addA) [Bacillus paralicheniformis strain DSM 28591]
ATGGAGATTTCTAAACCGAAGGGCAGCAATTGGACTGATGACCAATGGAAGGCGATTGTCTCATCCGGCCGGGACATTTT
AGTTGCGGCAGCGGCCGGCTCCGGAAAAACGGCCGTGCTGGTTGAGCGGATCATTCGGAAAATAACGGATCAGGAACATC
CCGTAGATGTCGACAGGCTGCTTGTCGTCACCTTTACGAATGCATCTGCGGCTGAAATGAAGCACAGGATCGGCGAAGCG
CTCGAAAAAGAGCTTGCCGAAAATCCGGGTTCGCTTCATTTGCGCAGACAGCTTGCTTTATTAAACAAAGCGAGCATATC
AACATTGCACTCATTCTGTCTTCAAGTCATCCGCAAATACTATTATTTGATCGATGTTGATCCGGCTTTCCGGATCGCCG
ATCAGACGGAAGGCGAGCTGCTTGGCGATGAGGTGCTGGACGAGCTGTTTGAAGAAGAATACAAAAAGCAAGATCCGGCC
TTTTTTGAACTTGTGGACAGATATACGACAGACCGTCATGACCTCGATTTGCAGCATCTCGTCAAGCGGGTCTACGAGTT
TTCCCGTTCGCATCCCGATCCGGAAGGCTGGCTTCACACATTTGTTGATCTGTATGACGCGGCTTCAGATACGAAAGTTG
AGGCTCTGCCGTTTTATTCTTACATTAAAGAAGACATCGCACTCGTTCTGGAGGGGATGCGGCAAAAGCTGACGCGTGCG
CTTGATTTGACAAAGCAGCCAGGGGGGCCTGCGCCGCGCGCCGAAAATTTCCTCGATGATTTAGCGCAGATTGACAGGCT
GATTCAGCAGCAGAATGATTTTTCGGCTCTGTACGAGCTTGTACCGGCCGTTTCGTTTCAAAGATTGAAGCCGTGCAAAG
GAGATGCGTACGATCCTCGATTGGTTGATGAGGCCGCAGATCTCCGCAACAGCGCGAAAAAGCAACTTGAAAAGCTGAAA
AGCGATTATTTTACGCGAACTCCCGAGCAGCACCTTGAGAGCTTGAGGGAAATGAAGCCGGTCATTCAGACGCTCGTCCA
GCTCGTGTTGGAGTATGGCAAGCGGTTTGCGGACGCGAAAAAGGAAAAAGCGATCGTCGATTTCTCAGACCTTGAACACG
ACTGCCTTGCGATTTTATCCGGGAAAAACCAAGCCGGCGAAGCCGTGCCGAGCGAAGCGGCGAAGTTTTACCGCCATCAG
TTCCATGAAGTGCTTGTTGATGAATATCAGGATACGAACTTGGTCCAGGAAGCGATTTTAAAGTTCGTCGCCAAAGAGGA
GCATGAGGGGAACCTGTTTATGGTGGGCGATGTCAAGCAGTCGATTTACCGGTTCCGCCTGGCAGAACCGCTTTTGTTCC
TTTCGAAATATAAACGCTTTACAGACGATGGCTCGGGTTCCGGTCAAAAAATCGATTTAAATAAAAACTTCAGAAGCCGT
TCAGATATTTTGGACAGCACGAACTTTTTATTCAAGCAGCTCATGGGAGAAAAGGTCGGGGAAGTCGAATATGACGAACA
GGCCGAATTGAAGCTTGGCGCGTCTTATCCGTCGAACGAAGCGACAAAAACGGAGCTTCTGCTCATCGAAAACCAGAGCG
GCGCGCAGGATGAAGAGGCTGAAGAGCTTGAGGCGGTCCAGCTTGAAGCAAGAGCGATGGCCGGACAAATCCGCAGGCTG
ATAACAGAAAAATTTCAAGTATATGATGCCAAAGCGAAAGCGTCACGGAACATCCAGTACCGTGATATCGTGGTGCTTTT
GCGATCGATGCCTTGGGCGCCGCAAATTATGGACGAGTTTAAACAGCAGGGGATTCCGGTATACGCGAACCTCTCAACGG
GTTATTTTGAAGCGACAGAAGTATCGGTCACACTGTCTTTATTAAAAATCATCGATAATGCTTATCAGGACATCCCGCTT
GCGTCCGTTCTCAGATCGCCTGTTGTAGGTCTTGACGAAAATGAGCTTTCCTTGATCAGAATCAAGGATAAAAAAGCGCC
GTTTTACGAAGCGATGAAAGCATACCTTGCTGCAGCAGATGGCGATGAGAGGCTCAGCGAAAAGCTTCGCCGCTTTGACG
CCCTGCTCAAAAAGTGGAGAGCGTATGCGAAAAACCACTCTGTGGCAGAGCTGATCTGGGAAATCTACCGGGATACGAAG
TATTTGGATTATGTCGGCGGAATGCCGGGCGGAAAACAGCGGCAGGCCAATTTGCGCGCGCTTTACGACAGGGCAAGATC
CTATGAAGCGACATCGTTCCGCGGTTTGTTCCGCTTTTTAAGGTTTATTGAGCGGATGCAGGAGCGGGGTGATGATCTCG
GAACGGCAAGAGCTCTGAGCGAACAGGAAGACGTTGTTCGGCTGATGACGATCCACTCAAGCAAAGGGCTTGAATTTCCT
GTCGTATTTACCGCCGGTCTCGGACGGAATTTTAATATGATGGACTTGAACAAGTCTTATCTGCTGGATAAAGAACTCGG
TTTCGGAACGAAGTTTATTCATCCGAAGTGGCGGATCAGCTATCCGACGCTGCCGCTGATCGCGATGAAGAAAAAGCTCC
GCCGCGAGCTTTTATCAGAGGAGCTGCGCGTCTTGTATGTCGCTCTTACCCGGGCCAAGGAAAAGCTGTACCTGGTCGGG
ACGGCTAAGGATAAAGAAAAGCTGCTTGCCGACTGGCGGTCACAAGCGGCGGGGTCTGAGTGGCTGCTTCCGGATTATGA
ACGGTTTCAGGCGAAATCTTACCTGGATTTCATCGGACCTGCTTTGATGAGACACAGAGATATGGATGAATCCGGCGCGC
CGCTGGTGATTGATGAGATCCGTGAACATCCGGCGCGCTTTCAGGTCAGCTGGCTGTCGGCCGCGGATCTTCAAGCAGAA
GATATTGATCAGGCCGGTGAAGAAAGACACGGCCGGCTCTCCCAAATTCAAATGGGGCTTCCGATCGATGGTTCGTTTGA
GTATGAGCAACAAGTCAGAGAAAGGCTGACATGGTCATATCCATACAAAGACGCCGCCAAAGTCCGAACAAAACAGTCTG
TCTCAGAAATGAAAAGGCAGAAGGAGTATGAGGATGAGTACGGCGACCGCTCGCTGATTCGCCCAACCAAGGATGCTCTC
CTGTTTAAACGGCCGTCCTTTATGATGGTTAAAGGCCTGACCGCGGCCGAACGAGGGACGGCGATGCACACCGTCATGCA
GCATATTCCGCTGACCCGTGCGCTTGAAATGAATGAGCTCAGCCGCCTCCTAGACAGGCTTGTTGAGAAAGAGCTATTAA
CAGAAGACCAGCGGGCAGCGATTGAGGAAGACGATATTCTCGCATTCTTTGATACGGAAATCGGACAAAAGCTTCTCGGC
GCCCGCCGCGTCGAACGGGAAGTTCCCTTTAACATGACGCTGTCCGCCAAAGAGGTTTATCCTGATCTTGAGTCAGCCGA
CGAACCTGTATTGATACAGGGAATTATCGATTGTTTATTCGAGACGGAGGACGGTTTTTACCTTCTTGATTACAAAACCG
ACCGGATACACGGAAAGTACCGAAACGGATTCGAAGGGGCCGAACCGATTTTAAGGAAGCGTTACGAAACACAAATTCAG
CTTTATGCACGAGCCGTTGAAACGATGATTAAAATGCCGCTCAAAGGGCGTGCACTGTACTTTTTTGACGGAGGACATGT
GCTCTTATTTTAA


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

72.055

100

0.721