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靶点验证:LY341495 对 mGluR2 的选择性弱于 mGluR4,使谷氨酸成为一种选择性较低的激动剂。

Target validation: Weak selectivity of LY341495 for mGluR2 over mGluR4 makes glutamate a less selective agonist.

机构信息

Department of Pharmacology and Physiology University of Rochester Medical Center Rochester New York.

出版信息

Pharmacol Res Perspect. 2019 May 3;7(3):e00471. doi: 10.1002/prp2.471. eCollection 2019 Jun.

Abstract

Metabotropic glutamate receptors (mGluRs) are class C G protein coupled receptors with widespread expression in the central nervous system. There are eight mGluRs in the mammalian genome. Research on mGluRs relies on the availability of selective compounds. While many selective allosteric compounds have been described, selectivity of orthosteric agonists and antagonists has been more difficult due to the similarity of the glutamate binding pocket across the mGluR family. LY341495 has been used for decades as a potent and selective group II mGluR antagonist. The selectivity of LY341495 was investigated here between mGluR2, a group II mGluR, and mGluR4, a group III receptor, heterologously expressed in adult rat sympathetic neurons from the superior cervical ganglion (SCG), which provides a null-mGluR background upon which mGluRs were examined in isolation. The compound does in fact selectively inhibit mGluR2 over mGluR4, but in such a way that it makes signaling of the two receptors more difficult to distinguish. The glutamate potency of mGluR2 is about 10-fold higher than mGluR4. 50 nmol L LY341495 did not alter mGluR4 signaling but shifted the mGluR2 glutamate dose-response about 10-fold, such that it overlapped more closely with that of mGluR4. Increasing the LY341494 dose to 500 nmol L further shifted the glutamate dose-response of mGluR2 by another ~10-fold, but also shifted that of mGluR4 similarly. Thus, while glutamate is a moderately selective agonist of mGluR2 over mGluR4 when applied alone, in the presence of increasing concentrations of LY341495, this selectivity of glutamate is lost.

摘要

代谢型谷氨酸受体(mGluRs)是 C 类 G 蛋白偶联受体,在中枢神经系统中广泛表达。哺乳动物基因组中有 8 种 mGluRs。mGluRs 的研究依赖于选择性化合物的可用性。虽然已经描述了许多选择性变构化合物,但由于谷氨酸结合口袋在 mGluR 家族中具有相似性,因此对正构激动剂和拮抗剂的选择性更具挑战性。LY341495 已被使用了几十年,是一种有效的、选择性的 II 型 mGluR 拮抗剂。这里研究了 LY341495 在异源表达于颈上交感神经节(SCG)的成年大鼠交感神经元中的 II 型 mGluR2 和 III 型受体 mGluR4 之间的选择性,该神经元提供了一个 mGluR 缺失的背景,可以在这个背景下单独检测 mGluRs。该化合物实际上确实选择性地抑制 mGluR2 而不是 mGluR4,但它使得这两种受体的信号传递更难区分。mGluR2 的谷氨酸效力比 mGluR4 高约 10 倍。50nmol L LY341495 不会改变 mGluR4 信号,但会使 mGluR2 谷氨酸剂量反应约 10 倍,使其更紧密地与 mGluR4 重叠。将 LY341494 的剂量增加到 500nmol L 会使 mGluR2 的谷氨酸剂量反应再增加约 10 倍,但 mGluR4 的剂量反应也会类似地增加。因此,当单独应用时,谷氨酸是 mGluR2 对 mGluR4 的中度选择性激动剂,但在 LY341495 浓度增加的情况下,这种谷氨酸的选择性丧失。

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