Title of article :
Loop Relaxation, A Mechanism that Explains the Reduced Specificity of Rabbit 20α-Hydroxysteroid Dehydrogenase, A Member of the Aldo-Keto Reductase Superfamily
Author/Authors :
Jean-François Couture، نويسنده , , Pierre Legrand، نويسنده , , Line Cantin، نويسنده , , Fernand Labrie، نويسنده , , Van Luu-The، نويسنده , , Rock Breton، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Pages :
14
From page :
89
To page :
102
Abstract :
The aldo-keto reductase rabbit 20α–hydroxysteroid dehydrogenase (rb20α–HSD; AKR1C5) is less selective than other HSDs, since it exerts its activity both on androgens (C19 steroids) and progestins (C21 steroids). In order to identify the molecular determinants responsible for this reduced selectivity, binary (NADPH) and ternary (NADP+/testosterone) complex structures were solved to 1.32 Å and 2.08 Å resolution, respectively. Inspection of the cofactor-binding cavity led to the identification of a new interaction between side-chains of residues His222 and Lys270, which cover the central phosphate chain of the cofactor, reminiscent of the “safety-belt” found in other aldo-keto reductases. Testosterone is stabilized by a phenol/benzene tunnel composed of side-chains of numerous residues, among which Phe54, which forces the steroid to take up an orientation markedly contrasting with that found in HSD ternary complexes reported. Combining structural, site-directed mutagenesis, kinetic and fluorescence titration studies, we found that the selectivity of rb20α–HSD is mediated by (i) the relaxation of loop B (residues 223–230), partly controlled by the nature of residue 230, (ii) the nature of the residue found at position 54, and (iii) the residues found in the C-terminal tail of the protein especially the side-chain of the amino acid 306.
Keywords :
Testosterone , NADP(H) , aldo-keto reductase enzymes superfamily , rabbit 20?–hydroxysteroid dehydrogenase , binary and ternary complex structures
Journal title :
Journal of Molecular Biology
Serial Year :
2004
Journal title :
Journal of Molecular Biology
Record number :
1243620
Link To Document :
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