Estrophilic 3α,3β 17β,20α-hydroxysteroid dehydrogenase from rabbit liver—II. Mechanisms of enzyme-steroid interaction

A.N. Smirnov
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引用次数: 9

Abstract

Binding of [3H]estradiol, [3H]testosterone and [3H]progesterone to purified NADP-dependent estrophilic 3α,3β,17β,20α-hydroxysteroid dehydrogenase (EHSD) from rabbit liver cytosol has been examined. The three steroids bind to the enzyme with mode-rate affinity (Ka −; 10−17 M−1 at 4°C) and equal binding capacity. High-rates were shown for both association and dissociation processes. The steroids competitively inhibited the binding of each other to EHSD. At the same time, their relative binding affinities (RBA) were dependent on the nature of [3H]ligand. The results of RBA determinations for 72 steroids and their analogues by inhibition of [3H]progesterone binding to EHSD suggest that androgens and gestagens bind preferentially to the same site on EHSD molecule, while estrogens (at least by their D-ring) bind to another site. The assumption that EHSD molecule has more than one binding site for steroids is corroborated by (i) substrate inhibition revealed for a number of steroids; (ii) the estrogen ability to potentiate 20α-reduction of progesterone; (iii) stimulatory effect of 5α(β)-androstane-3α (β), 17β-diols on [3H]testosterone and progesterone binding; and (iv) reciprocal effect of NADP on [3H]estradiol and [3H]testosterone binding to EHSD. Significant differences in sensitivity to pH and changes in NaCl concentration upon metabolism and binding of various steroids have been found. At concentrations of 16 mM dithiothreitol potentiated catalytic conversion of some steroids and had no effect on metabolism of others. Both the affinity for steroids and binding capacity of EHSD are found to be cofactor-dependent.

It is speculated that EHSD has a complex active center including at least two mutually influencing steroid-binding sites tightly related with cofactor-binding site. The polyfunctionality of EHSD may be due to both the excess of functional protein groups that form individual constellations upon binding of any steroid and also to conformational lability of EHSD molecule implying alternative orientations of steroids at the binding site.

兔肝脏亲甾3α,3β 17β,20α-羟基类固醇脱氢酶- ii。酶-类固醇相互作用的机制
研究了[3H]雌二醇、[3H]睾酮和[3H]孕酮与纯化的nadp依赖性亲3α,3β,17β,20α-羟基类固醇脱氢酶(EHSD)的结合。三种甾体以中等亲和力(Ka−;10−17 M−1(4℃),结合力相等。高速率显示在联想和解离过程。类固醇竞争性地抑制了彼此与EHSD的结合。同时,它们的相对结合亲和力(RBA)取决于[3H]配体的性质。通过抑制[3H]孕酮与EHSD结合对72种类固醇及其类似物的RBA测定结果表明,雄激素和孕激素优先结合在EHSD分子上的同一位点,而雌激素(至少通过其d环)结合在另一个位点。EHSD分子有多个类固醇结合位点的假设得到了以下证据的证实:(i)对许多类固醇显示底物抑制;(ii)雌激素增强孕酮20α-还原的能力;(iii) 5α(β)-雄甾烷-3α (β), 17β-二醇对[3H]睾酮与孕酮结合的刺激作用;(iv) NADP对[3H]雌二醇和[3H]睾酮与EHSD结合的相互作用。在代谢和结合各种类固醇时,对pH和NaCl浓度的敏感性有显著差异。在16mm浓度下,二硫苏糖醇增强了一些类固醇的催化转化,而对其他类固醇的代谢没有影响。发现EHSD对类固醇的亲和力和结合能力都是辅因子依赖的。推测EHSD具有一个复杂的活性中心,包括至少两个与辅因子结合位点密切相关的相互影响的类固醇结合位点。EHSD的多功能性可能是由于过量的功能蛋白基团在与任何类固醇结合时形成单独的星座,也可能是由于EHSD分子的构象不稳定性,这意味着在结合位点上类固醇的取向可以选择。
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