Hammond Geoffrey L, Avvakumov George V, Muller Yves A
Departments of Obstetrics & Gynecology, Canadian Institutes of Health Research Group in Fetal and Neonatal Health and Development, The University of Western Ontario, London, Ontario, Canada N6A 4L6.
J Steroid Biochem Mol Biol. 2003 Jun;85(2-5):195-200. doi: 10.1016/s0960-0760(03)00195-x.
In humans, sex hormone-binding globulin (SHBG) binds and transports the biologically most important androgens and estrogens in the blood, and regulates the access of these steroids to their targets tissues. In addition to binding sex steroids, SHBG has specific binding sites for divalent cations including calcium and zinc. Zinc binding to a site at the entrance of the steroid-binding pocket in human SHBG has been shown to reduce its affinity for estrogens, while having no impact on the binding of C19 steroids. Crystallographic studies indicate that C18 and C19 steroids are bound in opposite orientations within the SHBG steroid-binding site, and we have obtained new information that supports a molecular model explaining the mechanism by which zinc alters the affinity of human SHBG for estrogens, by studying directly the estradiol-binding properties SHBG variants created by site-directed mutagenesis. In this model, the coordination of a zinc ion by the side chains of residues Asp65 and His136 eliminates a critical hydrogen bond between Asp65 and the hydroxyl at C3 of estrogens, such as estradiol and 2-methoxyestradiol, and causes disorder in a polypeptide loop segment that covers the steroid-binding site. The combination of these structural changes explains the specific decrease in the affinity of human SHBG for C18 steroids in the presence of a zinc ion.
在人类中,性激素结合球蛋白(SHBG)在血液中结合并转运生物学上最重要的雄激素和雌激素,并调节这些类固醇进入其靶组织。除了结合性类固醇外,SHBG还具有针对包括钙和锌在内的二价阳离子的特异性结合位点。已证明锌与人SHBG类固醇结合口袋入口处的一个位点结合会降低其对雌激素的亲和力,而对C19类固醇的结合没有影响。晶体学研究表明,C18和C19类固醇在SHBG类固醇结合位点内以相反的方向结合,并且通过直接研究定点诱变产生的SHBG变体的雌二醇结合特性,我们获得了新的信息,支持一个分子模型来解释锌改变人SHBG对雌激素亲和力的机制。在这个模型中,锌离子与Asp65和His136残基的侧链配位消除了Asp65与雌激素(如雌二醇和2-甲氧基雌二醇)C3处羟基之间的关键氢键,并导致覆盖类固醇结合位点的多肽环段紊乱。这些结构变化的组合解释了在锌离子存在下人SHBG对C18类固醇亲和力的特异性降低。