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GDP-mannose 4,6-dehydratase
NAD(P)H-binding protein
KR domain-containing protein
This enzymatic domain is part of bacterial polyketide synthases and catalyses the first step in the reductive modification of the beta-carbonyl centres in the growing polyketide chain. It uses NADPH to reduce the keto group to a hydroxy group [1]. [1]. 23790488. Structural and stereochemical analysis of a modular polyketide. synthase ketoreductase domain required for the generation of a. cis-alkene.. Bonnett SA, Whicher JR, Papireddy K, Florova G, Smith JL,. Reynolds KA;. Chem Biol. 2013;20:772-783. (from Pfam)
SDR family oxidoreductase
This family represents the C-terminal region of the male sterility protein in a number of arabidopsis and drosophila. A sequence-related jojoba acyl CoA reductase is also included. [1]. 9351246. The Arabidopsis MALE STERILITY 2 protein shares similarity with. reductases in elongation/condensation complexes.. Aarts MG, Hodge R, Kalantidis K, Florack D, Wilson ZA, Mulligan. BJ, Stiekema WJ, Scott R, Pereira A;. Plant J 1997;12:615-623. (from Pfam)
NmrA family NAD(P)-binding protein
NmrA is a negative transcriptional regulator involved in the post-translational modification of the transcription factor AreA. NmrA is part of a system controlling nitrogen metabolite repression in fungi [1]. This family only contains a few sequences as iteration results in significant matches to other Rossmann fold families. [1]. 11726498. The structure of the negative transcriptional regulator NmrA. reveals a structural superfamily which includes the short-chain. dehydrogenase/reductases.. Stammers DK, Ren J, Leslie K, Nichols CE, Lamb HK, Cocklin S,. Dodds A, Hawkins AR;. EMBO J 2001;20:6619-6626. (from Pfam)
polysaccharide biosynthesis protein
This is a family of diverse bacterial polysaccharide biosynthesis proteins including the CapD protein (Swiss:P39853) [1], WalL protein (Swiss:O86159) mannosyl-transferase (Swiss:O05349) [2] and several putative epimerases (e.g. WbiI Swiss:O69130). [1]. 7961465. Sequence analysis and molecular characterization of genes. required for the biosynthesis of type 1 capsular polysaccharide. in Staphylococcus aureus.. Lin WS, Cunneen T, Lee CY;. J Bacteriol 1994;176:7005-7016.. [2]. 9079898. Identification of additional genes required for O-antigen. biosynthesis in Vibrio cholerae O1.. Fallarino A, Mavrangelos C, Stroeher UH, Manning PA;. J Bacteriol 1997;179:2147-2153. (from Pfam)
NAD-dependent epimerase/dehydratase family protein
This family of proteins utilise NAD as a cofactor. The proteins in this family use nucleotide-sugar substrates for a variety of chemical reactions. [1]. 9174344. Structural analysis of UDP-sugar binding to UDP-galactose. 4-epimerase from Escherichia coli.. Thoden JB, Hegeman AD, Wesenberg G, Chapeau MC, Frey PA, Holden. HM;. Biochemistry 1997;36:6294-6304. (from Pfam)
SDR family NAD(P)-dependent oxidoreductase
This family contains a wide variety of dehydrogenases. [1]. 9735295. The refined crystal structure of Drosophila lebanonensis alcohol. dehydrogenase at 1.9 A resolution.. Benach J, Atrian S, Gonzalez-Duarte R, Ladenstein R;. J Mol Biol 1998;282:383-399.. [2]. 10387002. Structure of tropinone reductase-II complexed with NADP+ and. pseudotropine at 1.9 A resolution: implication for. stereospecific substrate binding and catalysis.. Yamashita A, Kato H, Wakatsuki S, Tomizaki T, Nakatsu T,. Nakajima K, Hashimoto T, Yamada Y, Oda J;. Biochemistry 1999;38:7630-7637. (from Pfam)
3-beta hydroxysteroid dehydrogenase/isomerase family
The enzyme 3 beta-hydroxysteroid dehydrogenase/5-ene-4-ene isomerase (3 beta-HSD) catalyses the oxidation and isomerisation of 5-ene-3 beta-hydroxypregnene and 5-ene-hydroxyandrostene steroid precursors into the corresponding 4-ene-ketosteroids necessary for the formation of all classes of steroid hormones. [1]. 1562516. Structure and tissue-specific expression of 3. beta-hydroxysteroid dehydrogenase/5-ene-4-ene isomerase genes in. human and rat classical and peripheral steroidogenic tissues.. Labrie F, Simard J, Luu-The V, Pelletier G, Belanger A, Lachance. Y, Zhao HF, Labrie C, Breton N, de Launoit Y, et al. J Steroid Biochem Mol Biol 1992;41:421-435. (from Pfam)
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