State Key Laboratory of Molecular Biology, Shanghai Institute of Biochemistry and Cell Biology, Center for Excellence in Molecular Cell Science, Chinese Academy of Sciences, University of Chinese Academy of Sciences, Shanghai 200031, China.
Proc Natl Acad Sci U S A. 2023 Apr 4;120(14):e2209917120. doi: 10.1073/pnas.2209917120. Epub 2023 Mar 29.
While most therapeutic research on G-protein-coupled receptors (GPCRs) focuses on receptor activation by (endogenous) agonists, significant therapeutic potential exists through agonist-independent intrinsic constitutive activity that can occur in various physiological and pathophysiological settings. For example, inhibiting the constitutive activity of 5-HTR-a receptor that is found almost exclusively in the brain and mediates excitatory neurotransmission-has demonstrated a therapeutic effect on cognitive/memory impairment associated with several neuropsychiatric disorders. However, the structural basis of such constitutive activity remains unclear. Here, we present a cryo-EM structure of serotonin-bound human 5-HTR-Gs heterotrimer at 3.0-Å resolution. Detailed analyses of the structure complemented by comprehensive interrogation of signaling illuminate key structural determinants essential for constitutive 5-HTR activity. Additional structure-guided mutagenesis leads to a nanobody mimic Gαs for 5-HTR that can reduce its constitutive activity. Given the importance of 5-HTR for a large number of neuropsychiatric disorders, insights derived from these studies will accelerate the design of more effective medications, and shed light on the molecular basis of constitutive activity.
虽然大多数关于 G 蛋白偶联受体(GPCR)的治疗研究都集中在受体被(内源性)激动剂激活上,但在各种生理和病理生理情况下,通过非激动剂依赖的固有组成活性,存在着显著的治疗潜力。例如,抑制主要存在于大脑中并介导兴奋性神经传递的 5-HTR-a 受体的组成活性,已经证明对与多种神经精神疾病相关的认知/记忆障碍具有治疗效果。然而,这种组成活性的结构基础仍不清楚。在这里,我们展示了结合血清素的人类 5-HTR-Gs 三聚体的冷冻电镜结构,分辨率为 3.0 Å。结构的详细分析辅以全面的信号转导检测,阐明了组成性 5-HTR 活性所必需的关键结构决定因素。额外的基于结构的突变导致可以降低其组成活性的 5-HTR 的纳米抗体模拟 Gαs。鉴于 5-HTR 对大量神经精神疾病的重要性,这些研究的结果将加速更有效药物的设计,并阐明组成活性的分子基础。