Department of Chemistry, University of Vermont, Burlington, VT, 05405, USA.
Department of Neurological Sciences, College of Medicine, University of Vermont, Burlington, VT, 05405, USA.
Sci Rep. 2017 Jul 14;7(1):5427. doi: 10.1038/s41598-017-05815-x.
The G protein-coupled pituitary adenylate cyclase-activating polypeptide receptor (PAC1R) is a potential therapeutic target for endocrine, metabolic and stress-related disorders. However, many questions regarding the protein structure and dynamics of PAC1R remain largely unanswered. Using microsecond-long simulations, we examined the open and closed PAC1R conformations interconnected within an ensemble of transitional states. The open-to-closed transition can be initiated by "unzipping" the extracellular domain and the transmembrane domain, mediated by a unique segment within the β3-β4 loop. Transitions between different conformational states range between microseconds to milliseconds, which clearly implicate allosteric effects propagating from the extracellular face of the receptor to the intracellular G protein-binding site. Such allosteric dynamics provides structural and mechanistic insights for the activation and modulation of PAC1R and related class B receptors.
G 蛋白偶联的垂体腺苷酸环化酶激活多肽受体(PAC1R)是内分泌、代谢和应激相关疾病的潜在治疗靶点。然而,关于 PAC1R 的蛋白质结构和动力学的许多问题仍然没有得到解答。我们使用微秒级的模拟,研究了在一系列过渡态中相互连接的开放和关闭 PAC1R 构象。通过 "解拉链" 细胞外结构域和跨膜结构域,可以启动从开放到关闭的转变,这是由 β3-β4 环内的一个独特片段介导的。不同构象状态之间的转变范围在微秒到毫秒之间,这清楚地表明,变构效应从受体的细胞外表面传播到细胞内 G 蛋白结合位点。这种变构动力学为 PAC1R 和相关 B 类受体的激活和调节提供了结构和机制上的见解。