Ribonucleoside-diphosphate reductase 2 subunit alpha

Details

Name
Ribonucleoside-diphosphate reductase 2 subunit alpha
Synonyms
  • 1.17.4.1
  • R1E protein
  • Ribonucleotide reductase 2
Gene Name
nrdE
Organism
Salmonella typhimurium (strain LT2 / SGSC1412 / ATCC 700720)
Amino acid sequence
>lcl|BSEQ0016556|Ribonucleoside-diphosphate reductase 2 subunit alpha
MATTTPERVMQETMDYHALNAMLNLYDKAGHIQFDKDQQAIDAFFATHVRPHSVTFASQH
ERLGTLVREGYYDDAVLARYDRAFVLRLFEHAHASGFRFQTFLGAWKFYTSYTLKTFDGK
RYLEHFEDRVTMVALTLAQGDETLATQLTDEMLSGRFQPATPTFLNCGKQQRGELVSCFL
LRIEDNMESIGRAVNSALQLSKRGGGVAFLLSNLREAGAPIKRIENQSSGVIPVMKMLED
AFSYANQLGARQGAGAVYLHAHHPDILRFLDTKRENADEKIRIKTLSLGVVIPDITFRLA
KENAQMALFSPYDIQRRYGKPFGDIAISERYDELIADPHVRKTYINARDFFQTLAEIQFE
SGYPYIMFEDTVNRANPIAGRINMSNLCSEILQVNSASRYDDNLDYTHIGHDISCNLGSL
NIAHVMDSPDIGRTVETAIRGLTAVSDMSHIRSVPSIAAGNAASHAIGLGQMNLHGYLAR
EGIAYGSPEALDFTNLYFYTITWHAVHTSMRLARERGKTFAGFAQSRYASGDYFTQYLQD
DWQPKTAKVRALFARSGITLPTREMWLKLRDDVMRYGIYNQNLQAVPPTGSISYINHATS
SIHPIVAKIEIRKEGKTGRVYYPAPFMTNENLDMYQDAYDIGPEKIIDTYAEATRHVDQG
LSLTLFFPDTATTRDINKAQIYAWRKGIKSLYYIRLRQLALEGTEIEGCVSCAL
Number of residues
714
Molecular Weight
80586.595
Theoretical pI
7.04
GO Classification
Functions
ATP binding / ribonucleoside-diphosphate reductase activity, thioredoxin disulfide as acceptor
Processes
DNA replication
General Function
Ribonucleoside-diphosphate reductase activity, thioredoxin disulfide as acceptor
Specific Function
Provides the precursors necessary for DNA synthesis. Catalyzes the biosynthesis of deoxyribonucleotides from the corresponding ribonucleotides. R1E contains the binding sites for both substrates and allosteric effectors and carries out the actual reduction of the ribonucleotide.
Pfam Domain Function
Transmembrane Regions
Not Available
Cellular Location
Not Available
Gene sequence
>lcl|BSEQ0016557|Ribonucleoside-diphosphate reductase 2 subunit alpha (nrdE)
TTGGCAACAACTACCCCGGAGCGCGTAATGCAGGAAACCATGGATTACCACGCCCTGAAC
GCGATGCTGAATCTTTACGATAAAGCAGGCCATATTCAGTTCGACAAGGACCAGCAGGCG
ATCGACGCCTTCTTTGCCACCCACGTCCGCCCGCATTCCGTGACGTTTGCCAGCCAGCAT
GAACGTCTGGGGACGCTGGTTCGGGAAGGGTATTACGATGACGCCGTCCTCGCGCGTTAC
GACCGCGCCTTCGTCCTTCGCCTGTTCGAGCACGCCCATGCCAGCGGCTTTCGCTTCCAG
ACGTTTCTTGGCGCCTGGAAGTTCTATACCAGTTACACGCTGAAAACCTTCGACGGCAAA
CGTTATCTGGAACACTTTGAAGATCGGGTGACAATGGTGGCGTTGACGCTGGCGCAGGGT
GACGAAACGCTGGCCACCCAACTGACCGATGAAATGCTTTCTGGTCGCTTTCAGCCCGCT
ACCCCGACTTTTTTAAATTGCGGCAAACAGCAGCGTGGGGAACTGGTCTCCTGCTTCCTG
CTCCGTATCGAAGACAACATGGAGTCGATCGGGCGGGCGGTGAATTCGGCGCTGCAACTC
TCCAAACGCGGCGGCGGCGTCGCGTTTTTACTCTCCAATCTGCGCGAGGCGGGCGCGCCG
ATCAAACGCATTGAGAATCAGTCTTCCGGCGTGATCCCGGTGATGAAAATGCTGGAAGAC
GCGTTTTCGTATGCCAACCAACTTGGCGCGCGCCAGGGGGCCGGCGCGGTTTATCTCCAT
GCGCACCATCCGGATATTCTGCGTTTTCTGGATACCAAACGAGAAAACGCTGACGAAAAA
ATCCGGATCAAAACGCTCTCTCTCGGCGTGGTGATCCCGGATATCACCTTCCGGCTGGCG
AAAGAAAACGCGCAAATGGCGCTCTTTTCGCCCTATGACATACAACGACGCTACGGCAAA
CCGTTTGGCGATATCGCCATTAGCGAACGGTACGATGAATTAATTGCCGATCCGCACGTG
CGCAAAACCTATATTAACGCCCGTGACTTTTTTCAAACACTGGCGGAGATTCAGTTCGAA
TCCGGGTATCCCTACATCATGTTTGAAGATACGGTAAACCGCGCGAATCCCATTGCTGGT
CGCATTAATATGAGCAACCTGTGCTCAGAAATTTTACAGGTCAATAGCGCTTCCCGTTAC
GACGATAACCTTGACTATACCCACATCGGGCATGACATCTCCTGCAATCTCGGCTCGCTG
AATATCGCTCACGTCATGGATTCACCGGACATTGGCCGTACCGTAGAAACCGCTATTCGC
GGCCTGACGGCGGTGTCGGACATGAGCCATATACGCAGCGTGCCCTCAATAGCCGCCGGT
AATGCCGCCTCTCATGCCATCGGTCTGGGCCAGATGAATCTGCATGGCTATCTGGCGAGG
GAAGGTATTGCCTACGGTTCGCCGGAGGCGTTGGATTTCACCAATCTCTATTTTTACACC
ATTACCTGGCATGCCGTGCATACTTCAATGCGGCTAGCCCGCGAACGCGGCAAAACCTTC
GCCGGATTTGCGCAGTCGCGCTATGCCAGCGGCGACTATTTTACGCAGTATTTACAGGAC
GACTGGCAACCGAAAACAGCGAAAGTCAGGGCGCTATTTGCCCGCAGCGGCATTACGCTG
CCCACACGAGAAATGTGGCTAAAGCTGCGCGACGATGTGATGCGCTATGGCATCTATAAC
CAAAATTTGCAGGCGGTGCCGCCGACCGGTTCGATTTCTTACATTAATCATGCGACCTCC
AGCATTCATCCGATTGTGGCCAAAATTGAGATTCGCAAAGAGGGCAAAACCGGGCGTGTG
TATTACCCCGCGCCGTTTATGACCAATGAAAACCTGGACATGTATCAGGATGCTTACGAT
ATCGGTCCGGAAAAAATTATTGATACCTATGCCGAGGCCACGCGCCACGTCGATCAAGGG
CTGTCGCTCACCCTGTTTTTCCCCGATACCGCCACGACCCGCGATATCAACAAGGCGCAG
ATCTATGCCTGGCGAAAAGGTATTAAGTCCCTGTATTACATCCGGCTTCGCCAGTTGGCG
CTGGAAGGTACTGAAATTGAAGGCTGCGTATCCTGCGCGCTATAA
Chromosome Location
Not Available
Locus
Not Available
External Identifiers
ResourceLink
UniProtKB IDQ08698
UniProtKB Entry NameRIR3_SALTY
GenBank Protein ID1050838
GenBank Gene IDX73226
General References
  1. Jordan A, Gibert I, Barbe J: Cloning and sequencing of the genes from Salmonella typhimurium encoding a new bacterial ribonucleotide reductase. J Bacteriol. 1994 Jun;176(11):3420-7. [Article]
  2. McClelland M, Sanderson KE, Spieth J, Clifton SW, Latreille P, Courtney L, Porwollik S, Ali J, Dante M, Du F, Hou S, Layman D, Leonard S, Nguyen C, Scott K, Holmes A, Grewal N, Mulvaney E, Ryan E, Sun H, Florea L, Miller W, Stoneking T, Nhan M, Waterston R, Wilson RK: Complete genome sequence of Salmonella enterica serovar Typhimurium LT2. Nature. 2001 Oct 25;413(6858):852-6. [Article]
  3. Uppsten M, Farnegardh M, Jordan A, Eliasson R, Eklund H, Uhlin U: Structure of the large subunit of class Ib ribonucleotide reductase from Salmonella typhimurium and its complexes with allosteric effectors. J Mol Biol. 2003 Jun 27;330(1):87-97. [Article]
  4. Uppsten M, Farnegardh M, Domkin V, Uhlin U: The first holocomplex structure of ribonucleotide reductase gives new insight into its mechanism of action. J Mol Biol. 2006 Jun 2;359(2):365-77. Epub 2006 Mar 31. [Article]

Drug Relations

Drug Relations
DrugBank IDNameDrug groupPharmacological action?ActionsDetails
DB02452Thymidine 5'-triphosphateexperimentalunknownDetails
DB03222dATPexperimentalunknownDetails
DB032582'-Deoxycytidine 5'-triphosphateexperimentalunknownDetails