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皮质类固醇结合球蛋白的S到R转变与激素释放机制

The S-to-R transition of corticosteroid-binding globulin and the mechanism of hormone release.

作者信息

Zhou Aiwu, Wei Zhenquan, Stanley Peter L D, Read Randy J, Stein Penelope E, Carrell Robin W

机构信息

Department of Haematology and Medicine, Cambridge Institute for Medical Research, University of Cambridge, Cambridge CB2 0XY, UK.

出版信息

J Mol Biol. 2008 Jun 27;380(1):244-51. doi: 10.1016/j.jmb.2008.05.012. Epub 2008 May 14.

Abstract

Corticosteroids are transported in the blood by a serpin, corticosteroid-binding globulin (CBG), and their normally equilibrated release can be further triggered by the cleavage of the reactive loop of CBG. We report here the crystal structures of cleaved human CBG (cCBG) at 1.8-A resolution and its complex with cortisol at 2.3-A resolution. As expected, on cleavage, CBG undergoes the irreversible S-to-R serpin transition, with the cleaved reactive loops being fully incorporated into the central beta-sheet. A connecting loop of helix D, which is in a helix-like conformation in native CBG, unwinds and grossly perturbs the hormone binding site following beta-sheet expansion in the cCBG structure but shifts away from the binding site by more than 8 A following the binding of cortisol. Unexpectedly, on cortisol binding, the hormone binding site of cCBG adopts a configuration almost identical with that of the native conformer. We conclude that CBG has adapted an allosteric mechanism of the serpins to allow equilibrated release of the hormones by a flip-flop movement of the intact reactive loop into and out of the beta-sheet. The change in the hormone binding affinity results from a change in the flexibility or plasticity of the connecting loop, which modulates the configuration of the binding site.

摘要

皮质类固醇在血液中由一种丝氨酸蛋白酶抑制剂——皮质类固醇结合球蛋白(CBG)运输,其正常的平衡释放可通过CBG反应环的裂解进一步触发。我们在此报告了裂解的人CBG(cCBG)在1.8埃分辨率下的晶体结构及其与皮质醇在2.3埃分辨率下的复合物晶体结构。正如预期的那样,裂解后,CBG经历了不可逆的从S型到R型丝氨酸蛋白酶抑制剂转变,裂解的反应环完全并入中央β-折叠。螺旋D的一个连接环,在天然CBG中呈螺旋状构象,在cCBG结构中β-折叠扩展后展开并严重扰乱激素结合位点,但在皮质醇结合后从结合位点移开超过8埃。出乎意料的是,在皮质醇结合时,cCBG的激素结合位点采用了与天然构象几乎相同的构型。我们得出结论,CBG采用了丝氨酸蛋白酶抑制剂的变构机制,通过完整反应环进出β-折叠的翻转运动实现激素的平衡释放。激素结合亲和力的变化源于连接环柔韧性或可塑性的变化,这调节了结合位点的构型。

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