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Atomic structure of progesterone complexed with its receptor.

机译:孕酮与其受体复合的原子结构。

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The physiological effects of progestins are mediated by the progesterone receptor, a member of the steroiduclear receptor superfamily. As progesterone is required for maintenance of pregnancy, its receptor has been a target for pharmaceuticals. Here we report the 1.8 A crystal structure of a progesterone-bound ligand-binding domain of the human progesterone receptor. The nature of this structure explains the receptor's selective affinity for progestins and establishes a common mode of recognition of 3-oxy steroids by the cognate receptors. Although the overall fold of the progesterone receptor is similar to that found in related receptors, the progesterone receptor has a quite different mode of dimerization. A hormone-induced stabilization of the carboxy-terminal secondary structure of the ligand-binding domain of the progesterone receptor accounts for the stereochemistry of this distinctive dimer, explains the receptor's characteristic pattern of ligand-dependent protease resistance and its loss of repression, and indicates how the anti-progestin RU486 might work in birth control. The structure also indicates that the analogous 3-keto-steroid receptors may have a similar mechanism of action.
机译:孕激素的生理作用是由孕激素受体(类固醇/核受体超家族的成员)介导的。由于维持妊娠需要孕酮,因此其受体已成为药物的靶标。在这里,我们报告人孕激素受体的孕酮结合配体结合域的1.8 A晶体结构。这种结构的性质解释了受体对孕激素的选择性亲和力,并建立了同源受体识别3-氧类固醇的常见方式。尽管孕酮受体的总体折叠与相关受体中的相似,但孕酮受体具有完全不同的二聚化模式。激素诱导的孕酮受体配体结合结构域的羧基末端二级结构的稳定作用解释了这种独特的二聚体的立体化学,解释了受体配体依赖性蛋白酶抗性的特征模式及其抑制作用的丧失,并表明抗孕激素RU486如何在节育中起作用。该结构还表明类似的3-酮-类固醇受体可能具有类似的作用机理。

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