Materials and Process Simulation Center 139-74, California Institute of Technology, Pasadena, CA 91125, USA.
Proc Natl Acad Sci U S A. 2012 Dec 4;109(49):19988-93. doi: 10.1073/pnas.1218051109. Epub 2012 Nov 19.
The glucagon-like peptide 1 receptor (GLP1R) is a G protein-coupled receptor (GPCR) involved in insulin synthesis and regulation; therefore, it is an important drug target for treatment of diabetes. However, GLP1R is a member of the class B1 family of GPCRs for which there are no experimental structures. To provide a structural basis for drug design and to probe class B GPCR activation, we predicted the transmembrane (TM) bundle structure of GLP1R bound to the peptide Exendin-4 (Exe4; a GLP1R agonist on the market for treating diabetes) using the MembStruk method for scanning TM bundle conformations. We used protein-protein docking methods to combine the TM bundle with the X-ray crystal structure of the 143-aa N terminus coupled to the Exe4 peptide. This complex was subjected to 28 ns of full-solvent, full-lipid molecular dynamics. We find 14 strong polar interactions of Exe4 with GLP1R, of which 8 interactions are in the TM bundle (2 interactions confirmed by mutation studies) and 6 interactions involve the N terminus (3 interactions found in the crystal structure). We also find 10 important hydrophobic interactions, of which 4 interactions are in the TM bundle (2 interactions confirmed by mutation studies) and 6 interactions are in the N terminus (6 interactions present in the crystal structure). Thus, our predicted structure agrees with available mutagenesis studies. We suggest a number of mutation experiments to further validate our predicted structure. The structure should be useful for guiding drug design and can provide a structural basis for understanding ligand binding and receptor activation of GLP1R and other class B1 GPCRs.
胰高血糖素样肽 1 受体(GLP1R)是一种参与胰岛素合成和调节的 G 蛋白偶联受体(GPCR);因此,它是治疗糖尿病的重要药物靶标。然而,GLP1R 是 B1 类 GPCR 家族的成员,目前尚无实验结构。为了为药物设计提供结构基础,并探索 B 类 GPCR 的激活机制,我们使用 MembStruk 方法扫描跨膜(TM)束构象,预测了与肽 Exendin-4(Exe4;一种用于治疗糖尿病的 GLP1R 激动剂)结合的 GLP1R 的 TM 束结构。我们使用蛋白质-蛋白质对接方法将 TM 束与 143 个氨基酸 N 端与 Exe4 肽偶联的 X 射线晶体结构结合。该复合物经历了 28 纳秒的全溶剂、全脂分子动力学。我们发现 Exe4 与 GLP1R 有 14 个强极性相互作用,其中 8 个相互作用位于 TM 束(2 个相互作用通过突变研究得到证实),6 个相互作用涉及 N 端(3 个相互作用在晶体结构中发现)。我们还发现了 10 个重要的疏水相互作用,其中 4 个相互作用位于 TM 束(2 个相互作用通过突变研究得到证实),6 个相互作用位于 N 端(6 个相互作用存在于晶体结构中)。因此,我们预测的结构与可用的突变研究一致。我们建议进行一些突变实验以进一步验证我们预测的结构。该结构应该有助于指导药物设计,并为理解 GLP1R 和其他 B1 类 GPCR 的配体结合和受体激活提供结构基础。