Detailed information    

insolico Bioinformatically predicted

Overview


Name   uvrA   Type   Machinery gene
Locus tag   CXG95_RS01485 Genome accession   NZ_CP025226
Coordinates   299675..302548 (+) Length   957 a.a.
NCBI ID   WP_003185648.1    Uniprot ID   Q65ED9
Organism   Bacillus licheniformis strain PB3     
Function   homologous recombination (predicted from homology)   
Homologous recombination

Genomic Context


Location: 294675..307548
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  CXG95_RS01460 (CXG95_01455) swrA 294866..295219 (+) 354 WP_003185659.1 swarming motility protein SwrAA -
  CXG95_RS01465 (CXG95_01460) - 295517..296728 (+) 1212 WP_026699240.1 PDZ domain-containing protein -
  CXG95_RS01470 (CXG95_01465) - 296853..297146 (+) 294 WP_003185656.1 DUF5316 domain-containing protein -
  CXG95_RS01475 (CXG95_01470) - 297265..297498 (+) 234 WP_003185654.1 CsbA family protein -
  CXG95_RS01480 (CXG95_01475) uvrB 297682..299667 (+) 1986 WP_003185651.1 excinuclease ABC subunit UvrB Machinery gene
  CXG95_RS01485 (CXG95_01480) uvrA 299675..302548 (+) 2874 WP_003185648.1 excinuclease ABC subunit UvrA Machinery gene
  CXG95_RS22305 (CXG95_01485) - 302692..302835 (+) 144 WP_003185642.1 VOC family protein -
  CXG95_RS01500 (CXG95_01495) - 303068..303298 (-) 231 WP_003185639.1 hypothetical protein -
  CXG95_RS01505 (CXG95_01500) - 303513..303839 (+) 327 WP_003185637.1 DUF4870 domain-containing protein -
  CXG95_RS01510 (CXG95_01505) - 303865..304959 (+) 1095 WP_003185635.1 DUF4097 domain-containing protein -
  CXG95_RS01515 (CXG95_01510) - 304964..305164 (+) 201 WP_003185633.1 PspC domain-containing protein -
  CXG95_RS01520 (CXG95_01515) - 305161..305520 (+) 360 WP_003185632.1 phage holin family protein -

Sequence


Protein


Download         Length: 957 a.a.        Molecular weight: 106775.12 Da        Isoelectric Point: 6.5877

>NTDB_id=217638 CXG95_RS01485 WP_003185648.1 299675..302548(+) (uvrA) [Bacillus licheniformis strain PB3]
MATKRIEVKGARAHNLKNIDVSIPRDQLVVLTGLSGSGKSSLAFDTIYAEGQRRYVESLSAYARQFLGQMDKPDVDAIEG
LSPAISIDQKTTSRNPRSTVGTVTEIYDYLRLLFARIGKPVCPVHGIEITSQTIEQMTDRILDYPERTKIQVLAPIVSGR
KGSHVKVLEQIRKQGYVRVRIDGEMNDLSEDIELEKNKKHSIEVVVDRIVIKEGVTARLTDSLETALRLGEGRVIIDVIG
QEELLFSEHHACPHCGFSIGELEPRMFSFNSPFGACPSCDGLGSKLEVDVELVIPNDELSLKENAIAPWEPQSSQYYPKL
LEAVCSHYGIDMDIPVRDLPKHHLEKILYGSGGEQIYFRYENDFGQVRENYIEFEGVIRNIERRYKETSSDYVRELMEKY
MANQPCPSCKGYRLKKESLAVLINGLHIGKITEMSVANALQFFRELDLSEKDMKIANLILREIEERLGFLNNVGLDYLTL
SRAAGTLSGGEAQRIRLATQIGSRLTGVLYILDEPSIGLHQRDNDRLIETLKNMRDIGNTLIVVEHDEDTMLAADYLIDI
GPGAGVHGGEVISAGTPEEVMNDDQSLTGQYLSGKKFIPLPAERRKPDNRFIEVKGAKENNLKNVSVKFPLGVFTAVTGV
SGSGKSTLVNEILHKTLAQKLHRAKTKPGEYKEIKGIEHLDKVIDIDQSPIGRTPRSNPATYTGVFDDIRDVFAQTNEAK
VRGYKKGRFSFNVKGGRCEACKGDGIIKIEMHFLPDVYVPCEVCHGKRYNRETLQVTYKGKNISDVLEMTVENAVQFFEN
IPKIKRKLQTLYDVGLGYITLGQPATTLSGGEAQRVKLASELHRRSTGRSLYILDEPTTGLHVDDIARLLAVLQRLVDNG
DTVLVIEHNLDIIKAADYLIDLGPEGGDGGGMIVAAGPPEEVVKVEGSYTGRYLKPIIERDKNRMKKRLQEKEAVRP

Nucleotide


Download         Length: 2874 bp        

>NTDB_id=217638 CXG95_RS01485 WP_003185648.1 299675..302548(+) (uvrA) [Bacillus licheniformis strain PB3]
ATGGCAACGAAACGAATTGAGGTGAAAGGTGCAAGGGCCCATAACCTGAAAAATATCGATGTCTCTATTCCGAGGGATCA
GCTTGTCGTTTTGACAGGTCTTTCGGGATCAGGGAAATCATCCCTTGCGTTCGATACGATATATGCAGAGGGGCAGCGGC
GCTATGTCGAGTCTCTCTCCGCATATGCCCGCCAGTTTTTAGGACAGATGGACAAACCCGACGTCGATGCGATTGAAGGC
CTGTCGCCGGCGATCAGCATCGATCAGAAAACAACGAGCCGGAACCCCCGGTCGACAGTCGGAACGGTGACGGAAATCTA
CGATTATCTCCGGCTGCTGTTTGCCAGAATCGGAAAGCCGGTTTGCCCTGTTCACGGCATTGAAATTACCTCGCAAACGA
TCGAACAGATGACGGACAGAATTTTGGATTATCCCGAGCGGACGAAGATCCAGGTGCTTGCGCCGATCGTCTCGGGAAGA
AAAGGATCGCACGTGAAAGTGCTCGAACAAATCAGAAAACAAGGCTATGTGAGAGTCCGGATCGACGGCGAAATGAACGA
CCTCTCAGAGGACATCGAGCTCGAAAAGAATAAAAAGCATTCGATCGAAGTCGTCGTCGACCGCATCGTCATAAAAGAAG
GCGTAACCGCCCGTCTCACAGACTCGCTCGAAACGGCGCTCCGCCTCGGCGAAGGCCGTGTGATCATCGACGTGATCGGG
CAGGAAGAGCTGCTGTTCAGCGAGCACCATGCCTGTCCGCACTGCGGTTTTTCAATTGGGGAACTGGAGCCGAGGATGTT
TTCTTTCAACAGCCCGTTCGGCGCATGTCCGAGCTGCGACGGCCTCGGGTCCAAGCTGGAAGTCGATGTAGAGCTCGTCA
TTCCAAACGATGAGTTGTCTCTAAAGGAGAATGCGATTGCACCTTGGGAACCGCAGAGCTCCCAATATTATCCGAAGCTG
CTTGAAGCGGTATGCAGCCACTATGGAATCGATATGGATATTCCGGTCAGAGACCTGCCGAAGCACCACCTTGAGAAAAT
CCTCTACGGCAGCGGAGGCGAGCAGATTTATTTCAGATATGAAAACGACTTCGGACAAGTCCGGGAAAACTACATTGAGT
TCGAAGGCGTCATCCGCAATATCGAAAGGCGCTATAAAGAAACCAGCTCGGATTATGTTCGTGAACTGATGGAAAAATAT
ATGGCTAATCAGCCGTGCCCTTCATGCAAAGGCTACCGTCTGAAAAAGGAATCCCTCGCCGTGCTGATTAACGGCCTTCA
CATCGGTAAGATAACCGAAATGTCGGTAGCTAACGCCCTTCAATTTTTCCGTGAACTTGATCTTTCGGAAAAAGACATGA
AGATCGCCAACCTCATTTTGCGGGAGATTGAAGAAAGGCTCGGATTCTTGAACAATGTCGGGCTTGACTATTTGACGCTC
AGCCGCGCAGCCGGCACTCTGTCGGGGGGAGAAGCGCAGCGGATCAGGCTTGCAACGCAAATCGGCTCAAGGCTGACCGG
TGTCCTTTACATCCTTGATGAGCCGTCAATCGGTCTTCATCAACGCGATAACGACCGCCTGATTGAGACGCTCAAAAACA
TGAGGGATATCGGAAACACATTGATCGTCGTCGAGCATGACGAGGATACAATGCTTGCCGCCGATTATTTAATCGATATC
GGGCCCGGCGCGGGTGTACACGGGGGAGAAGTAATCTCCGCCGGAACGCCGGAAGAAGTGATGAACGATGATCAATCTCT
GACAGGGCAATATCTTTCAGGGAAAAAATTCATTCCTCTTCCTGCCGAGAGAAGAAAGCCTGACAACCGCTTTATCGAGG
TAAAAGGGGCAAAGGAAAACAACTTGAAAAATGTTTCCGTGAAATTTCCGCTCGGCGTGTTCACAGCTGTTACCGGGGTA
TCGGGATCAGGGAAAAGCACGCTCGTTAATGAAATTCTCCACAAAACGCTGGCTCAGAAGCTGCATCGGGCTAAGACGAA
ACCGGGAGAATACAAAGAAATAAAAGGAATCGAGCACCTCGATAAAGTGATCGATATTGACCAGTCTCCGATCGGCCGGA
CGCCGAGGTCAAATCCGGCCACATATACCGGCGTGTTCGATGACATCCGCGACGTGTTTGCCCAGACGAATGAAGCGAAA
GTCAGAGGATACAAGAAAGGGCGCTTCAGCTTTAACGTCAAAGGCGGACGCTGTGAGGCCTGCAAAGGCGACGGAATCAT
TAAAATCGAGATGCACTTCCTGCCCGATGTATACGTTCCTTGTGAGGTTTGCCACGGAAAGAGATACAACCGTGAAACGC
TTCAGGTTACGTACAAAGGCAAAAATATCTCTGACGTGCTTGAGATGACGGTCGAGAATGCCGTTCAATTTTTTGAGAAC
ATCCCGAAAATCAAGCGCAAGCTGCAGACCCTCTATGATGTCGGTCTTGGCTATATTACGCTCGGACAGCCGGCTACAAC
GCTTTCCGGGGGAGAAGCGCAGCGGGTCAAATTGGCATCTGAACTTCACCGCCGTTCAACGGGAAGATCCCTTTATATTT
TGGACGAGCCGACGACAGGACTGCACGTCGATGATATCGCAAGGCTTTTGGCCGTTCTGCAGCGCCTGGTCGACAATGGA
GATACAGTGCTTGTAATCGAACACAATCTAGATATTATAAAAGCGGCTGATTATTTGATCGACTTGGGTCCTGAAGGCGG
AGACGGCGGGGGAATGATCGTGGCTGCCGGACCTCCCGAAGAAGTCGTGAAAGTCGAAGGGTCATATACCGGCCGTTATT
TAAAACCGATCATTGAACGCGACAAAAACAGAATGAAGAAGCGGCTTCAAGAAAAAGAAGCTGTCAGACCGTAA


Secondary structure


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



3D structure


Source ID Structure
  AlphaFold DB Q65ED9

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
  uvrA Streptococcus pneumoniae R6

69.165

97.597

0.675

  uvrA Streptococcus pneumoniae TIGR4

69.165

97.597

0.675

  uvrA Streptococcus pneumoniae D39

69.165

97.597

0.675