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醇类和麻醉剂对蛋白激酶C的抑制作用。

Inhibition of protein kinase C by alcohols and anaesthetics.

作者信息

Slater S J, Cox K J, Lombardi J V, Ho C, Kelly M B, Rubin E, Stubbs C D

机构信息

Department of Pathology and Cell Biology, Thomas Jefferson University, Philadelphia, Pennsylvania 19107.

出版信息

Nature. 1993 Jul 1;364(6432):82-4. doi: 10.1038/364082a0.

Abstract

Despite almost a century of research, the mechanism of anaesthesia remains obscure and there is still no agreement on the location of the site(s) of action. Because the potencies of general anaesthetics increase in proportion to their solubility in olive oil, this led to a consensus that the site is within the cell membrane. This led to theories that lipid bilayer perturbation was the primary event, which was then transmitted to a membrane protein. But at the concentrations used clinically, such perturbations are small. A plausible site would be in or on ion channels at the synapse, where a number of modulatory effects have been described. A possible location for such a site would be at the protein-lipid interface. We report here that anaesthetics inhibit protein kinase C, a key component in signal transduction. The potency is a linear function of the octanol-water partition coefficient (the Meyer-Overton rule of anaesthesia). The effect was obtained in a lipid-free assay, implicating a hydrophobic site in the protein, supporting the contention that a (membrane) protein may be a target for anaesthetic interactions. In a lipid-dependent assay, a potential role of lipids in the protein-site model was demonstrated. The inhibition was absent in the isolated catalytic domain, suggesting that the site of inhibition is on the regulatory subunit, which is unique to protein kinase C.

摘要

尽管经过了近一个世纪的研究,麻醉机制仍然不明,对于作用部位的位置也尚未达成共识。由于全身麻醉药的效能与其在橄榄油中的溶解度成正比,这使得人们达成了一个共识,即作用部位在细胞膜内。这引发了一些理论,认为脂质双分子层扰动是主要事件,随后传递给膜蛋白。但在临床使用的浓度下,这种扰动很小。一个合理的作用部位可能在突触处的离子通道内或其上,在那里已经描述了许多调节作用。这样一个部位的可能位置可能在蛋白质 - 脂质界面。我们在此报告,麻醉药会抑制蛋白激酶C,它是信号转导中的关键成分。效能是正辛醇 - 水分配系数的线性函数(麻醉的迈耶 - 奥弗顿规则)。这种效应是在无脂质的测定中获得的,这表明蛋白质中有一个疏水性位点,支持了(膜)蛋白可能是麻醉相互作用靶点的观点。在脂质依赖性测定中,证明了脂质在蛋白质位点模型中的潜在作用。在分离的催化结构域中不存在抑制作用,这表明抑制位点在调节亚基上,这是蛋白激酶C所特有的。

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