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人绒毛膜促性腺激素中受体结合依赖性结构变化:光化学亚基间交联

Receptor binding dependent structural changes in human choriogonadotropin: photochemical inter-subunit crosslinking.

作者信息

Ji I, Pan Y N, Lee Y M, Phang T, Ji T H

机构信息

Department of Molecular Biology, University of Wyoming, 82071-3944, Laramie, V/yoming, USA.

出版信息

Endocrine. 1995 Dec;3(12):907-11. doi: 10.1007/BF02738896.

Abstract

Activation of surface receptors is thought to occur in multiple transient steps with conformational adjustments of hormones and receptors beginning from the initial hormone-receptor contact. In this study, we have established a sensitive photochemical crosslinking method to detect structural change of hCG upon receptor binding. hCG consists of an α subunit and a β subunit. Free α subunit was derivatized with photosensitive reagents and reassociated with unmodified β subunit. Reassociated hCG αβ dimer was capable of high affinity receptor binding and activation. The reagents attached to the α subunit were capable of crosslinking the α subunit to the β subunit. However, the extent of inter-subunit cross-linking in solution was two-three fold greater than inter-subunit crosslinking after hCG bound to the receptor. This difference indicates a novel structural change at the subunit interface in response to hCG binding to the receptor. Although highly unlikely, other microenvironmental factors might have interfered with the crosslinking efficiency without impacting the structure of hCG. This study lays the ground work to precisely define the location and nature of the change. Such information will be crucial for the understanding of the molecular mechanism of the hormone-receptor interaction and receptor activation.

摘要

表面受体的激活被认为是在多个短暂步骤中发生的,从激素与受体的初始接触开始,激素和受体就会进行构象调整。在本研究中,我们建立了一种灵敏的光化学交联方法,以检测人绒毛膜促性腺激素(hCG)与受体结合时的结构变化。hCG由一个α亚基和一个β亚基组成。游离的α亚基用光敏试剂进行衍生化,并与未修饰的β亚基重新结合。重新结合的hCGαβ二聚体能够进行高亲和力的受体结合和激活。连接到α亚基上的试剂能够将α亚基与β亚基交联。然而,溶液中α亚基与β亚基之间的交联程度比hCG与受体结合后的亚基间交联程度大两到三倍。这种差异表明,响应于hCG与受体的结合,亚基界面处发生了新的结构变化。尽管可能性极小,但其他微环境因素可能会干扰交联效率,而不影响hCG的结构。这项研究为精确确定变化的位置和性质奠定了基础。这些信息对于理解激素 - 受体相互作用和受体激活的分子机制至关重要。

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