Structures of full-length glycoprotein hormone receptor signalling complexes

IF 48.5 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Nature Pub Date : 2021-08-04 DOI:10.1101/2021.08.03.454894
J. Duan, P. Xu, Xi Cheng, C. Mao, T. Croll, Xinheng He, Jingjing Shi, X. Luan, W. Yin, E. You, Qiu-feng Liu, Shuyang Zhang, Hualiang Jiang, Yan Zhang, Yi Jiang, H. Xu
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引用次数: 40

Abstract

Luteinizing hormone and chorionic gonadotropin are glycoprotein hormones that are related to follicle-stimulating hormone and thyroid-stimulating hormone1,2. Luteinizing hormone and chorionic gonadotropin are essential to human reproduction and are important therapeutic drugs3–6. They activate the same G-protein-coupled receptor, luteinizing hormone–choriogonadotropin receptor (LHCGR), by binding to the large extracellular domain3. Here we report four cryo-electron microscopy structures of LHCGR: two structures of the wild-type receptor in the inactive and active states; and two structures of the constitutively active mutated receptor. The active structures are bound to chorionic gonadotropin and the stimulatory G protein (Gs), and one of the structures also contains Org43553, an allosteric agonist7. The structures reveal a distinct ‘push-and-pull’ mechanism of receptor activation, in which the extracellular domain is pushed by the bound hormone and pulled by the extended hinge loop next to the transmembrane domain. A highly conserved 10-residue fragment (P10) from the hinge C-terminal loop at the interface between the extracellular domain and the transmembrane domain functions as a tethered agonist to induce conformational changes in the transmembrane domain and G-protein coupling. Org43553 binds to a pocket of the transmembrane domain and interacts directly with P10, which further stabilizes the active conformation. Together, these structures provide a common model for understanding the signalling of glycoprotein hormone receptors and a basis for drug discovery for endocrine diseases. Cryo-electron microscopy structures of the luteinizing hormone–choriogonadotropin receptor (LHCGR), in complex with Gs and in various states of activation, reveal a distinct mechanism of receptor activation, with implications for drug discovery.
全长糖蛋白激素受体信号复合物的结构
促黄体激素和绒毛膜促性腺激素是与促卵泡激素和促甲状腺激素相关的糖蛋白激素1,2。促黄体激素和绒毛膜促性腺激素对人类生殖至关重要,是重要的治疗药物3-6。它们通过与细胞外大结构域结合,激活相同的G蛋白偶联受体,即黄体生成素-绒毛膜促性腺激素受体(LHCGR)3。在这里,我们报道了LHCGR的四种冷冻电子显微镜结构:野生型受体的两种结构处于非活性和活性状态;以及组成型活性突变受体的两种结构。活性结构与绒毛膜促性腺激素和刺激性G蛋白(Gs)结合,其中一个结构还含有变构激动剂Org43553。这些结构揭示了受体激活的独特“推拉”机制,其中细胞外结构域由结合的激素推动,并由跨膜结构域旁边的延伸铰链环拉动。来自细胞外结构域和跨膜结构域之间界面处的铰链C末端环的高度保守的10个残基片段(P10)起到束缚激动剂的作用,以诱导跨膜结构区的构象变化和G蛋白偶联。Org43553与跨膜结构域的口袋结合并直接与P10相互作用,从而进一步稳定活性构象。总之,这些结构为理解糖蛋白激素受体的信号传导提供了一个通用模型,并为内分泌疾病的药物发现提供了基础。促黄体生成素-绒毛膜促性腺激素受体(LHCGR)与Gs复合并处于各种激活状态,其冷冻电镜结构揭示了受体激活的独特机制,对药物发现具有启示意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Nature
Nature 综合性期刊-综合性期刊
CiteScore
90.00
自引率
1.20%
发文量
3652
审稿时长
3 months
期刊介绍: Nature is a prestigious international journal that publishes peer-reviewed research in various scientific and technological fields. The selection of articles is based on criteria such as originality, importance, interdisciplinary relevance, timeliness, accessibility, elegance, and surprising conclusions. In addition to showcasing significant scientific advances, Nature delivers rapid, authoritative, insightful news, and interpretation of current and upcoming trends impacting science, scientists, and the broader public. The journal serves a dual purpose: firstly, to promptly share noteworthy scientific advances and foster discussions among scientists, and secondly, to ensure the swift dissemination of scientific results globally, emphasizing their significance for knowledge, culture, and daily life.
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