Wang Yuren, Lee Yan, Zhang Jie, Young Kathleen H
Neuroscience Discovery Research, Wyeth Research, Princeton, NJ 08543-8000, USA.
Pharmacology. 2008;82(2):97-104. doi: 10.1159/000138387. Epub 2008 Jun 12.
Regulators of G protein signaling (RGS) are a family of GTPase-activating proteins (GAP) that interact with heterotrimeric G proteins in the negative regulation of G-protein-coupled receptor (GPCR) signaling. RGS4, the first identified mammalian member of the RGS family, has been implicated in many GPCR signaling pathways involved in disease states. We report herein the identification of a 16-amino-acid peptide (P17) as an inhibitor of RGS4. The peptide was found by screening a random peptide library using RGS4 as 'bait' in a yeast two-hybrid system. This peptide inhibited RGS4 GAP activity on Galpha(i1)in a GTPase assay, and blocked the interaction between RGS4 and Galpha(i1)in a pull-down assay. The peptide displayed dose-dependent inhibition of RGS4 and Galpha-interacting protein (GAIP) GAP activities, yet showed no substantial effect on RGS7. Electrophysiological studies in Xenopus oocytes demonstrated that P17 attenuates RGS4 modulation of M(2) muscarinic receptor stimulation of GIRK (G-protein-mediated inwardly rectifying potassium) channels. Deletion of an arginine at the N terminus of P17 abolished its ability to inhibit RGS4 GAP activity, as did deletions of C-terminal residues. The P17 peptide showed no similarity to any known peptide sequence. Further investigation and optimization of the peptide may provide unique information for the development of RGS4 inhibitors for future therapeutic application.
G蛋白信号调节因子(RGS)是一类GTP酶激活蛋白(GAP)家族,在G蛋白偶联受体(GPCR)信号的负调控中与异源三聚体G蛋白相互作用。RGS4是RGS家族中首个被鉴定出的哺乳动物成员,与许多涉及疾病状态的GPCR信号通路有关。我们在此报告鉴定出一种16氨基酸肽(P17)作为RGS4的抑制剂。该肽是通过在酵母双杂交系统中以RGS4为“诱饵”筛选随机肽库而发现的。在GTP酶分析中,此肽抑制RGS4对Gα(i1)的GAP活性,并在下拉分析中阻断RGS4与Gα(i1)之间的相互作用。该肽对RGS4和Gα相互作用蛋白(GAIP)的GAP活性表现出剂量依赖性抑制,但对RGS7没有显著影响。非洲爪蟾卵母细胞的电生理研究表明,P17减弱了RGS4对M(2)毒蕈碱受体刺激GIRK(G蛋白介导的内向整流钾)通道的调节作用。P17 N端的精氨酸缺失以及C端残基的缺失均消除了其抑制RGS4 GAP活性的能力。P17肽与任何已知肽序列均无相似性。对该肽的进一步研究和优化可能为开发用于未来治疗应用的RGS4抑制剂提供独特信息。