Mao Li-Min, Mathur Nirav, Mahmood Tayyibah, Rajan Sri, Chu Xiang-Ping, Wang John Q
Department of Biomedical Sciences, School of Medicine, University of Missouri-Kansas City, Kansas City, MO, United States.
Department of Anesthesiology, School of Medicine, University of Missouri-Kansas City, Kansas City, MO, United States.
Front Cell Dev Biol. 2022 Nov 3;10:1022544. doi: 10.3389/fcell.2022.1022544. eCollection 2022.
Group II metabotropic glutamate (mGlu) receptors (mGlu2/3) are Gαi/o-coupled receptors and are primarily located on presynaptic axonal terminals in the central nervous system. Like ionotropic glutamate receptors, group II mGlu receptors are subject to regulation by posttranslational phosphorylation. Pharmacological evidence suggests that several serine/threonine protein kinases possess the ability to regulate mGlu2/3 receptors. Detailed mapping of phosphorylation residues has revealed that protein kinase A (PKA) phosphorylates mGlu2/3 receptors at a specific serine site on their intracellular C-terminal tails in heterologous cells or neurons, which underlies physiological modulation of mGlu2/3 signaling. Casein kinases promote mGlu2 phosphorylation at a specific site. Tyrosine protein kinases also target group II receptors to induce robust phosphorylation. A protein phosphatase was found to specifically bind to mGlu3 receptors and dephosphorylate the receptor at a PKA-sensitive site. This review summarizes recent progress in research on group II receptor phosphorylation and the phosphorylation-dependent regulation of group II receptor functions. We further explore the potential linkage of mGlu2/3 phosphorylation to various neurological and neuropsychiatric disorders, and discuss future research aimed at analyzing novel biochemical and physiological properties of mGlu2/3 phosphorylation.
II 型代谢型谷氨酸(mGlu)受体(mGlu2/3)是与 Gαi/o 偶联的受体,主要位于中枢神经系统的突触前轴突终末。与离子型谷氨酸受体一样,II 型 mGlu 受体也受到翻译后磷酸化的调控。药理学证据表明,几种丝氨酸/苏氨酸蛋白激酶具有调节 mGlu2/3 受体的能力。磷酸化残基的详细定位显示,蛋白激酶 A(PKA)在异源细胞或神经元中其细胞内 C 末端尾巴上的特定丝氨酸位点使 mGlu2/3 受体磷酸化,这是 mGlu2/3 信号传导生理调节的基础。酪蛋白激酶在特定位点促进 mGlu2 磷酸化。酪氨酸蛋白激酶也作用于 II 型受体以诱导强烈的磷酸化。发现一种蛋白磷酸酶特异性结合 mGlu3 受体并在 PKA 敏感位点使该受体去磷酸化。本综述总结了 II 型受体磷酸化研究以及 II 型受体功能的磷酸化依赖性调节方面的最新进展。我们进一步探讨了 mGlu2/3 磷酸化与各种神经和神经精神疾病的潜在联系,并讨论了旨在分析 mGlu2/3 磷酸化新的生化和生理特性的未来研究。