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Gq和M1毒蕈碱胆碱能受体对磷脂酶C-β1的调节。受体介导的激活与GTP酶激活蛋白促进的失活之间的稳态平衡。

Regulation of phospholipase C-beta1 by Gq and m1 muscarinic cholinergic receptor. Steady-state balance of receptor-mediated activation and GTPase-activating protein-promoted deactivation.

作者信息

Biddlecome G H, Berstein G, Ross E M

机构信息

Department of Pharmacology, University of Texas Southwestern Medical Center, Dallas 75235-9041, USA.

出版信息

J Biol Chem. 1996 Apr 5;271(14):7999-8007. doi: 10.1074/jbc.271.14.7999.

Abstract

The phospholipase C-beta1 (PLC-beta1) signaling pathway was reconstituted by addition of purified PLC to phospholipid vesicles that contained purified recombinant m1 muscarinic cholinergic receptor, Gq, and 2-4 mol % [3H]phosphatidylinositol 4,5-bisphosphate. In this system, the muscarinic agonist carbachol stimulated steady-state PLC activity up to 90-fold in the presence of GTP. Both GTP and agonist were required for PLC activation, which was observed at physiological levels of Ca2+ (10-100 nM). PLC-beta1 is also a GTPase-activating protein for Gq. It accelerated steady-state GTPase activity up to 60-fold in the presence of carbachol, which alone stimulated activity 6-10-fold, and increased the rate of hydrolysis of Gq-bound GTP by at least 100-fold. Despite this rapid hydrolysis of Gq-bound GTP, the receptor maintained >10% of the total Gq in the active GTP-bound form by catalyzing GTP binding at a rate of at least 20-25 min-1, approximately 10-fold faster than previously described. These and other kinetic data indicate that the receptor and PLC-beta1 coordinately regulate the amplitude of the PLC signal and the rates of signal initiation and termination. They also suggest a mechanism in which the receptor, Gq, and PLC form a three-protein complex in the presence of agonist and GTP (stable over multiple GTPase cycles) that is responsible for PLC signaling.

摘要

通过向含有纯化的重组m1毒蕈碱胆碱能受体、Gq和2 - 4摩尔%[3H]磷脂酰肌醇4,5 - 二磷酸的磷脂囊泡中添加纯化的磷脂酶C(PLC),重建了磷脂酶C - β1(PLC - β1)信号通路。在该系统中,在存在GTP的情况下,毒蕈碱激动剂卡巴胆碱可将稳态PLC活性刺激高达90倍。PLC激活需要GTP和激动剂两者,在生理水平的Ca2 +(10 - 100 nM)下可观察到这种激活。PLC - β1也是Gq的GTP酶激活蛋白。在存在卡巴胆碱的情况下,它可将稳态GTP酶活性加速高达60倍,卡巴胆碱单独刺激活性6 - 10倍,并使与Gq结合的GTP的水解速率至少增加100倍。尽管与Gq结合的GTP迅速水解,但受体通过以至少20 - 25分钟-1的速率催化GTP结合,使总Gq中>10%保持在活性GTP结合形式,比先前描述的快约10倍。这些及其他动力学数据表明,受体和PLC - β1协同调节PLC信号的幅度以及信号起始和终止的速率。它们还提出了一种机制,即受体、Gq和PLC在激动剂和GTP存在下形成一个三蛋白复合物(在多个GTP酶循环中稳定),该复合物负责PLC信号传导。

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