Detailed information    

insolico Bioinformatically predicted

Overview


Name   uvrB   Type   Machinery gene
Locus tag   DF184_RS04490 Genome accession   NZ_CP029398
Coordinates   890067..892052 (+) Length   661 a.a.
NCBI ID   WP_044675015.1    Uniprot ID   -
Organism   Streptococcus suis strain HN105     
Function   homologous recombination (predicted from homology)   
Homologous recombination

Genomic Context


Location: 885067..897052
Locus tag Gene name Coordinates (strand) Size (bp) Protein ID Product Description
  DF184_RS04475 (DF184_04475) - 886382..886873 (+) 492 WP_044675016.1 GNAT family N-acetyltransferase -
  DF184_RS04480 (DF184_04480) - 886931..887671 (-) 741 WP_024390062.1 amino acid ABC transporter ATP-binding protein -
  DF184_RS04485 (DF184_04485) - 887671..889869 (-) 2199 WP_024394098.1 ABC transporter substrate-binding protein/permease -
  DF184_RS04490 (DF184_04490) uvrB 890067..892052 (+) 1986 WP_044675015.1 excinuclease ABC subunit UvrB Machinery gene

Sequence


Protein


Download         Length: 661 a.a.        Molecular weight: 75654.62 Da        Isoelectric Point: 4.5782

>NTDB_id=253164 DF184_RS04490 WP_044675015.1 890067..892052(+) (uvrB) [Streptococcus suis strain HN105]
MINRNTENQFKLVSKYSPSGDQPQAIETLVDNIEGGEKAQILMGATGTGKTYTMSQVIARVNKPTLVIAHNKTLAGQLYS
EFKEFFPENAVEYFVSYYDYYQPEAYVPSSDTYIEKDSSVNDEIDKLRHSATSALLERNDVIVVASVSCIYGLGSPKEYS
DSVVSLRPGQEISRDQLLNSLVDIQFERNDIDFQRGRFRVRGDVVEIFPASRDEHAFRVEFFGDEIDRIREIESLTGKVL
GDVDHLAIFPATHFVTNDDHMETAIAKIQAELEEQLKVFEAEGKLLEAQRLKQRTDYDIEMLREMGYTNGVENYSRHMDG
RSEGEPPYTLLDFFPEDYLIMIDESHMTMGQIKGMYNGDRSRKEMLVNYGFRLPSALDNRPLRREEFESHVHQIVYVSAT
PGDYEMEQTDTVVEQIIRPTGLLDPEVEVRPTMGQMDDLLGEINARVEKGERTFITTLTKKMAEDLTDYLKEMGVKVKYM
HSDIKTLERTEIIRDLRLGVFDVLIGINLLREGIDVPEVSLVAILDADKEGFLRNERGLIQTIGRAARNSEGHVIMYADK
ITESMRKAMDETARRRQLQMAYNEEHGIIPQTIKKEIRDLISVTKAVTQDKEEVVDFNALNKDERKDMIKKLEGQMQEAA
EVLDFELAAQIRDMVIELKNM

Nucleotide


Download         Length: 1986 bp        

>NTDB_id=253164 DF184_RS04490 WP_044675015.1 890067..892052(+) (uvrB) [Streptococcus suis strain HN105]
ATGATCAATCGAAATACTGAAAACCAATTTAAACTTGTATCTAAATACTCACCGTCTGGTGACCAGCCCCAAGCCATTGA
AACCTTGGTTGATAACATCGAGGGGGGCGAAAAAGCCCAGATTCTCATGGGGGCGACGGGTACTGGTAAGACATACACCA
TGAGCCAGGTCATTGCCCGTGTCAATAAGCCCACTCTAGTCATCGCCCACAACAAGACTCTAGCTGGTCAGCTCTACAGC
GAGTTCAAGGAATTCTTCCCAGAAAATGCGGTCGAATACTTCGTATCTTACTATGATTACTACCAGCCAGAGGCCTATGT
ACCGTCTAGCGATACCTATATCGAGAAGGACAGTTCGGTCAATGATGAGATTGACAAACTCCGTCACTCAGCGACGTCAG
CTCTTCTCGAACGAAATGATGTCATAGTTGTGGCTTCGGTTTCCTGTATCTACGGTTTGGGATCGCCCAAGGAATATTCA
GATAGCGTGGTTAGTCTGCGACCCGGCCAGGAGATTTCCCGAGACCAGTTGCTCAATTCCTTGGTAGATATCCAGTTTGA
GCGCAATGACATCGACTTCCAACGGGGACGCTTCCGTGTACGTGGAGATGTGGTGGAGATTTTCCCCGCTTCTCGTGATG
AACACGCCTTCCGTGTGGAGTTTTTCGGTGATGAAATCGACCGCATTCGTGAGATTGAAAGTCTGACAGGTAAGGTTTTG
GGAGATGTGGACCACTTGGCGATTTTCCCTGCCACCCACTTCGTGACCAACGATGACCATATGGAAACGGCTATTGCCAA
GATTCAGGCGGAGCTGGAAGAGCAGCTCAAGGTCTTTGAAGCAGAAGGAAAACTCTTAGAAGCTCAGCGATTGAAACAAC
GAACCGACTACGACATCGAAATGCTACGGGAGATGGGCTATACCAACGGAGTTGAGAACTATTCACGACACATGGACGGG
CGAAGCGAGGGCGAGCCTCCATATACTCTGCTGGACTTTTTCCCTGAAGATTATCTCATCATGATTGACGAGAGCCACAT
GACCATGGGACAGATTAAGGGTATGTACAATGGTGACCGCTCACGCAAGGAGATGCTGGTCAACTATGGTTTCCGCCTCC
CGAGTGCACTGGACAACCGTCCGCTACGCAGGGAAGAATTTGAGAGCCATGTCCATCAGATTGTCTATGTATCTGCGACG
CCGGGTGACTATGAAATGGAGCAGACCGATACCGTTGTCGAGCAGATTATTCGGCCGACAGGGCTTTTGGATCCAGAGGT
GGAAGTCCGTCCAACCATGGGTCAAATGGATGACCTTTTAGGTGAAATCAATGCCCGTGTTGAGAAAGGCGAGCGGACCT
TTATTACCACCCTGACCAAGAAAATGGCAGAGGACTTGACCGACTATCTTAAAGAAATGGGTGTCAAGGTCAAGTATATG
CACTCGGATATCAAGACCTTGGAGCGTACAGAGATTATTCGTGATTTGCGTTTGGGTGTCTTTGATGTTCTGATAGGGAT
TAACCTCTTGCGTGAGGGGATTGACGTGCCAGAAGTCAGTCTGGTTGCTATCTTAGACGCAGACAAGGAAGGCTTCCTCC
GTAATGAGCGTGGACTCATCCAGACAATTGGTCGGGCAGCTCGTAACTCTGAAGGTCATGTGATTATGTATGCGGACAAG
ATTACTGAGTCCATGCGGAAGGCCATGGACGAAACCGCCCGCCGCCGTCAACTCCAAATGGCTTATAATGAAGAACATGG
CATTATTCCACAGACCATTAAGAAAGAGATCCGTGACCTGATTAGCGTGACCAAGGCTGTCACTCAGGACAAGGAAGAAG
TAGTGGACTTCAATGCTCTTAATAAAGATGAACGTAAGGATATGATCAAGAAACTGGAAGGTCAAATGCAGGAAGCTGCA
GAAGTGCTTGACTTTGAACTGGCAGCCCAGATTCGTGATATGGTCATCGAGTTGAAGAATATGTAG


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
  uvrB Streptococcus pneumoniae R6

90.923

100

0.909

  uvrB Streptococcus pneumoniae D39

90.923

100

0.909

  uvrB Streptococcus pneumoniae TIGR4

90.772

100

0.908


Multiple sequence alignment