KEGG   Legionella cherrii: NCTC11976_02489
Entry
NCTC11976_02489   CDS       T06506                                 
Symbol
nrdB
Name
(GenBank) ribonucleoside-diphosphate reductase subunit beta
  KO
K00526  ribonucleoside-diphosphate reductase beta chain [EC:1.17.4.1]
Organism
lcj  Legionella cherrii
Pathway
lcj00230  Purine metabolism
lcj00240  Pyrimidine metabolism
lcj01100  Metabolic pathways
lcj01232  Nucleotide metabolism
Module
lcj_M00053  Deoxyribonucleotide biosynthesis, ADP/GDP/CDP/UDP => dATP/dGTP/dCTP/dUTP
lcj_M00938  Pyrimidine deoxyribonucleotide biosynthesis, UDP => dTTP
Brite
KEGG Orthology (KO) [BR:lcj00001]
 09100 Metabolism
  09104 Nucleotide metabolism
   00230 Purine metabolism
    NCTC11976_02489 (nrdB)
   00240 Pyrimidine metabolism
    NCTC11976_02489 (nrdB)
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03400 DNA repair and recombination proteins [BR:lcj03400]
    NCTC11976_02489 (nrdB)
Enzymes [BR:lcj01000]
 1. Oxidoreductases
  1.17  Acting on CH or CH2 groups
   1.17.4  With a disulfide as acceptor
    1.17.4.1  ribonucleoside-diphosphate reductase
     NCTC11976_02489 (nrdB)
DNA repair and recombination proteins [BR:lcj03400]
 Prokaryotic type
  Other factors with a suspected DNA repair function
   Modulation of nucleotide pools
    NCTC11976_02489 (nrdB)
SSDB
Motif
Pfam: Ribonuc_red_sm PPP5 Oxygenase-NA
Other DBs
NCBI-ProteinID: VEB37974
LinkDB
Position
1:2819252..2820349
AA seq 365 aa
MSENIQHHDIIHTGATGYEPLEMGAARIHVDDKRIINCRADLNQLVPFKYRWAWDKYLTA
CANHWMPNEINMSADVALWKDPNGLTEAERLIIKRNLGFFSTADSLVANNLVLAVYRHIT
NPECRQYLLRQAFEEALHTHAYQYVIESLGLDEAEVFNMYREIPSVATKAAWALPFTQSL
GDETFHTGTVENDQRLLRDLIAFYVIFEGIFFYVGFTQILSMGRRNKMVGTSEQFQYILR
DESMHMNFGIDVINQIKIENPHLWTPEFKEEMIQLIRQGVALEYQYAKDTMPQGILGMNA
EMFEEYLHFIANRRLNQIGLPEQYPGAENPFPWMSEMMDLKKEKNFFETRVIEYQAGGTL
SWDDE
NT seq 1098 nt   +upstreamnt  +downstreamnt
atgtcagaaaatatacaacatcacgatataattcatactggtgcaacaggatatgagcct
cttgaaatgggagctgcacgtattcacgttgatgataaacgtatcattaactgccgggca
gacttaaaccagctcgttccttttaaatatagatgggcttgggacaagtacttaaccgct
tgtgcaaaccattggatgcctaatgaaatcaatatgagcgctgacgtagcgctctggaaa
gatcctaatggacttacagaagccgagcgtttaattatcaaacgtaatttgggatttttc
tcaacagcagattcattggttgccaataatctagtactcgctgtttatcgacacattacc
aatccggaatgcagacaatatttgttacgtcaggcctttgaagaggcattgcatactcat
gcgtaccagtacgttattgaaagtctaggacttgatgaggcagaagtctttaatatgtat
cgtgaaatcccatccgtagcaactaaagcagcttgggcattaccctttactcaaagcttg
ggtgatgaaacattccataccggtactgtagagaatgatcagcgcctcttgcgcgattta
attgccttctatgtaatctttgaagggatctttttctatgttggcttcacgcaaatcctc
tccatgggacgtcgaaataaaatggtaggcacttcagagcagttccaatatattttacgt
gatgaatccatgcatatgaattttggtattgatgtcatcaaccaaattaaaattgagaac
ccccatttgtggacacctgaatttaaagaagaaatgattcaattgattcgccaaggtgtg
gcgctggagtatcaatatgccaaggacaccatgcctcaaggcattttaggaatgaacgca
gaaatgttcgaagaatacttacacttcattgctaaccgccgtttaaatcaaatcggactc
ccagagcagtaccctggagctgaaaacccattcccttggatgagtgaaatgatggatctg
aaaaaagagaaaaacttttttgaaactcgcgtcattgagtatcaagcaggcggtactctc
agctgggatgatgaataa

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