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Medium- and short-chain dehydrogenase/reductase gene and protein families

Cellular and Molecular Life Sciences · 2008 · Vol. 65(24) · pp. 3895–906
K.L. KavanaghHans JörnvallBengt PerssonUdo Oppermann

Abstract

Short-chain dehydrogenases/reductases (SDRs) constitute a large family of NAD(P)(H)-dependent oxidoreductases, sharing sequence motifs and displaying similar mechanisms. SDR enzymes have critical roles in lipid, amino acid, carbohydrate, cofactor, hormone and xenobiotic metabolism as well as in redox sensor mechanisms. Sequence identities are low, and the most conserved feature is an alpha/beta folding pattern with a central beta sheet flanked by 2 - 3 alpha-helices from each side, thus a classical Rossmannfold motif for nucleotide binding. The conservation of this element and an active site, often with an Asn-Ser-Tyr-Lys tetrad, provides a platform for enzymatic activities encompassing several EC classes, including oxidoreductases, epimerases and lyases. The common mechanism is an underlying hydride and proton transfer involving the nicotinamide and typically an active site tyrosine residue, whereas substrate specificity is determined by a variable C-terminal segment. Relationships exist with bacterial haloalcohol dehalogenases, which lack cofactor binding but have the active site architecture, emphasizing the versatility of the basic fold in also generating hydride transfer-independent lyases. The conserved fold and nucleotide binding emphasize the role of SDRs as scaffolds for an NAD(P)(H) redox sensor system, of importance to control metabolic routes, transcription and signalling.

Enzyme Structure and FunctionAmino Acid Enzymes and MetabolismDiet, Metabolism, and DiseaseBiochemistryCofactorNAD+ kinaseBiologyActive siteDehydrogenaseBinding siteSequence motifConsensus sequenceOxidoreductase

MeSH terms

Alcohol DehydrogenaseAnimalsMultigene FamilyHumansOxidoreductasesProtein Structure, SecondaryCatalytic Domain

Funding

  • Wellcome Trust
  • GlaxoSmithKline
  • Ontario Innovation Trust
  • Genome Canada
  • Ontario Genomics
  • Ontario Genomics Institute
  • Stiftelsen för Strategisk Forskning
  • Karolinska Institutet
  • Knut och Alice Wallenbergs Stiftelse
  • Novo Nordisk
  • Vetenskapsrådet
Citations
895
FWCI
13.42
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104
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99%
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References
Short-chain dehydrogenases/reductases (SDR)
Biochemistry · 1995 · 1,254 citations
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