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RGS蛋白的受限肽抑制剂的作用机制和结构要求

Mechanism of action and structural requirements of constrained peptide inhibitors of RGS proteins.

作者信息

Roof Rebecca A, Jin Yafei, Roman David L, Sunahara Roger K, Ishii Masaru, Mosberg Henry I, Neubig Richard R

机构信息

Department of Pharmacology, 1150 W. Medical Center Dr, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

Chem Biol Drug Des. 2006 Apr;67(4):266-74. doi: 10.1111/j.1747-0285.2006.00373.x.

Abstract

Regulators of G-protein signaling (RGS) accelerate guanine triphosphate hydrolysis by Galpha-subunits and profoundly inhibit signaling by G protein-coupled receptors. The distinct expression patterns and pathophysiologic regulation of RGS proteins suggest that inhibitors may have therapeutic potential. We previously reported the design of a constrained peptide inhibitor of RGS4 (1: Ac-Val-Lys-[Cys-Thr-Gly-Ile-Cys]-Glu-NH2, S-S) based on the structure of the Galphai switch 1 region but its mechanism of action was not established. In the present study, we show that 1 inhibits RGS4 by mimicking and competing for binding with the switch 1 region of Galphai and that peptide 1 shows selectivity for RGS4 and RGS8 versus RGS7. Structure-activity relationships of analogs related to 1 are described that illustrate key features for RGS inhibition. Finally, we demonstrate activity of the methylene dithioether-bridged peptide inhibitor, 2, to modulate muscarinic receptor-regulated potassium currents in atrial myocytes. These data support the proposed mechanism of action of peptide RGS inhibitors, demonstrate their action in native cells, and provide a starting point for the design of RGS inhibitor drugs.

摘要

G蛋白信号调节因子(RGS)可加速Gα亚基的鸟嘌呤三磷酸水解,并显著抑制G蛋白偶联受体的信号传导。RGS蛋白独特的表达模式和病理生理调节表明,抑制剂可能具有治疗潜力。我们之前报道了一种基于Gαi开关1区域结构设计的RGS4的受限肽抑制剂(1:Ac-Val-Lys-[Cys-Thr-Gly-Ile-Cys]-Glu-NH2,S-S),但其作用机制尚未明确。在本研究中,我们表明1通过模拟并竞争与Gαi开关1区域的结合来抑制RGS4,并且肽1对RGS4和RGS8相对于RGS7具有选择性。描述了与1相关类似物的构效关系,阐明了RGS抑制的关键特征。最后,我们证明了亚甲基二硫醚桥连肽抑制剂2可调节心房肌细胞中毒蕈碱受体调节的钾电流。这些数据支持了肽RGS抑制剂的作用机制,证明了它们在天然细胞中的作用,并为RGS抑制剂药物的设计提供了一个起点。

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