Willard Francis S, Kimple Adam J, Johnston Christopher A, Siderovski David P
Department of Pharmacology, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.
Anal Biochem. 2005 May 15;340(2):341-51. doi: 10.1016/j.ab.2005.02.015.
Diverse extracellular signals regulate seven transmembrane-spanning receptors to modulate cellular physiology. These receptors signal primarily through activation of heterotrimeric guanine nucleotide binding proteins (G proteins). A major determinant of heterotrimeric G protein signaling in vivo and in vitro is the intrinsic GTPase activity of the Galpha subunit. RGS (regulator of G protein signaling) domain-containing proteins are GTPase accelerating proteins specific for Galpha subunits. In this article, we describe the use of the ribose-conjugated fluorescent guanine nucleotide analog BODIPYFL-GTP as a spectroscopic probe to measure intrinsic and RGS protein-catalyzed nucleotide hydrolysis by Galphao. BODIPYFL-GTP bound to Galphao exhibits a 200% increase in fluorescence quantum yield. Hydrolysis of BODIPYFL-GTP to BODIPYFL-GDP reduces the quantum yield to 27% above its unbound value. We demonstrate that BODIPYFL-GTP can be used as a rapid real-time probe for measuring RGS domain-catalyzed GTP hydrolysis by Galphao. We demonstrate the effectiveness of this assay in the analysis of loss-of-function point mutants of both Galphao and RGS12. This assay should be useful in screening for and analyzing RGS protein inhibitory compounds.
多种细胞外信号调节七跨膜受体以调控细胞生理功能。这些受体主要通过激活异三聚体鸟嘌呤核苷酸结合蛋白(G蛋白)来传递信号。体内和体外异三聚体G蛋白信号传导的一个主要决定因素是Gα亚基的内在GTP酶活性。含RGS(G蛋白信号调节因子)结构域的蛋白质是对Gα亚基具有特异性的GTP酶加速蛋白。在本文中,我们描述了使用核糖缀合的荧光鸟嘌呤核苷酸类似物BODIPYFL-GTP作为光谱探针来测量Gαo的内在和RGS蛋白催化的核苷酸水解。与Gαo结合的BODIPYFL-GTP的荧光量子产率增加了200%。BODIPYFL-GTP水解为BODIPYFL-GDP会使量子产率降低至比其未结合值高27%。我们证明BODIPYFL-GTP可作为一种快速实时探针,用于测量RGS结构域催化的Gαo的GTP水解。我们展示了该测定法在分析Gαo和RGS12功能丧失点突变体中的有效性。该测定法在筛选和分析RGS蛋白抑制性化合物方面应会有用。