Kunishima N, Shimada Y, Tsuji Y, Sato T, Yamamoto M, Kumasaka T, Nakanishi S, Jingami H, Morikawa K
Department of Structural Biology, Biomolecular Engineering Research Institute, Suita, Osaka, Japan.
Nature. 2000 Oct 26;407(6807):971-7. doi: 10.1038/35039564.
The metabotropic glutamate receptors (mGluRs) are key receptors in the modulation of excitatory synaptic transmission in the central nervous system. Here we have determined three different crystal structures of the extracellular ligand-binding region of mGluR1--in a complex with glutamate and in two unliganded forms. They all showed disulphide-linked homodimers, whose 'active' and 'resting' conformations are modulated through the dimeric interface by a packed alpha-helical structure. The bi-lobed protomer architectures flexibly change their domain arrangements to form an 'open' or 'closed' conformation. The structures imply that glutamate binding stabilizes both the 'active' dimer and the 'closed' protomer in dynamic equilibrium. Movements of the four domains in the dimer are likely to affect the separation of the transmembrane and intracellular regions, and thereby activate the receptor. This scheme in the initial receptor activation could be applied generally to G-protein-coupled neurotransmitter receptors that possess extracellular ligand-binding sites.
代谢型谷氨酸受体(mGluRs)是中枢神经系统中调节兴奋性突触传递的关键受体。在此,我们确定了mGluR1细胞外配体结合区域的三种不同晶体结构——一种与谷氨酸形成的复合物结构以及两种未结合配体的形式。它们均显示为二硫键连接的同型二聚体,其“活性”和“静息”构象通过紧密堆积的α-螺旋结构在二聚体界面处受到调节。双叶原聚体结构灵活地改变其结构域排列以形成“开放”或“关闭”构象。这些结构表明,谷氨酸结合使处于动态平衡的“活性”二聚体和“关闭”原聚体均得以稳定。二聚体中四个结构域的移动可能会影响跨膜区域和细胞内区域的分离,从而激活受体。这种初始受体激活的机制可能普遍适用于具有细胞外配体结合位点的G蛋白偶联神经递质受体。