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恒河猴1型和2型5α-还原酶的克隆、表达及特性分析:非那雄胺基于机制抑制的证据

Cloning, expression and characterization of rhesus macaque types 1 and 2 5alpha-reductase: evidence for mechanism-based inhibition by finasteride.

作者信息

Ellsworth K P, Azzolina B A, Cimis G, Bull H G, Harris G S

机构信息

Department of Biochemistry, Merck Research Laboratories, Rahway, NJ 07065, USA.

出版信息

J Steroid Biochem Mol Biol. 1998 Sep;66(5-6):271-9. doi: 10.1016/s0960-0760(98)00059-4.

Abstract

The rhesus macaque types 1 and 2 5alpha-reductase (5aR1 and 5aR2) were cloned and expressed in COS cells to facilitate comparison of rhesus and human 5aRs. The deduced protein sequences of the rhesus SaRs shared 94% and 96% identity with the human type 1 and 2 isozymes, respectively. Despite a four amino acid insertion at the N-terminal region of rhesus 5aR1, the biochemical properties of rhesus and human homologs are very similar with respect to pH optimum, Km values for testosterone and progesterone, and inhibition by a variety of inhibitors. As expected, the biochemical properties of the human and rhesus 5aR2 are also very similar. The mechanism of inhibition of the rhesus 5aR1 and 5aR2 by finasteride was investigated in more detail. Finasteride displays time dependent inhibition of the rhesus 5aR1 and 5aR2 with second order rate constants of 4 x 10(3) M(-1) s(-1) and 5.2 x 10(5) M(-1)s(-1). Inhibition of rhesus 5aR2 with 3H-finasteride resulted in 3H bound to the enzyme which is not released by dialysis. Heat denaturation of the [rhesus SaR2:inhibitor] complex releases dihydrofinasteride, a breakdown product presumably related to the NADP+-adduct previously identified with the human SaRs (Bull et al., Mechanism-based inhibition of human steroid 5alpha-reductase by finasteride: Enzyme catalyzed formation of NADP-dihydrofinasteride, a potent bisubstrate analog inhibitor. J. Amer. Chem. Soc., 1996, 118, 2359-2365). Taken together, these results provide good evidence that the rhesus macaque is a suitable model to evaluate the pharmacological properties of finasteride and other 5aR inhibitors.

摘要

克隆了恒河猴1型和2型5α-还原酶(5aR1和5aR2)并在COS细胞中进行表达,以利于比较恒河猴和人类的5aRs。恒河猴5aRs的推导蛋白序列与人类1型和2型同工酶分别具有94%和96%的同一性。尽管恒河猴5aR1的N端区域有四个氨基酸插入,但恒河猴和人类同源物的生化特性在最适pH、睾酮和孕酮的Km值以及各种抑制剂的抑制作用方面非常相似。正如预期的那样,人类和恒河猴5aR2的生化特性也非常相似。更详细地研究了非那雄胺对恒河猴5aR1和5aR2的抑制机制。非那雄胺对恒河猴5aR1和5aR2表现出时间依赖性抑制,二级速率常数分别为4×10³ M⁻¹ s⁻¹和5.2×10⁵ M⁻¹ s⁻¹。用³H-非那雄胺抑制恒河猴5aR2导致³H与酶结合,且不能通过透析释放。[恒河猴5aR2:抑制剂]复合物的热变性会释放二氢非那雄胺,这是一种降解产物,可能与先前在人类5aRs中鉴定的NADP⁺加合物有关(布尔等人,非那雄胺对人类类固醇5α-还原酶的基于机制的抑制:酶催化形成NADP-二氢非那雄胺,一种有效的双底物类似物抑制剂。《美国化学会志》,1996年,118卷,2359 - 2365页)。综上所述,这些结果提供了充分的证据,表明恒河猴是评估非那雄胺和其他5aR抑制剂药理特性的合适模型。

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