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一般麻醉剂异丙酚在 Zn²⁺ 的存在下抑制水通道蛋白-4。

A general anaesthetic propofol inhibits aquaporin-4 in the presence of Zn²⁺.

机构信息

Department of Pharmacology, School of Medicine, Keio University, Tokyo, Japan.

出版信息

Biochem J. 2013 Sep 1;454(2):275-82. doi: 10.1042/BJ20130046.

Abstract

AQP4 (aquaporin-4), a water channel protein that is predominantly expressed in astrocyte end-feet, plays an important role in the brain oedema formation, and is thereby considered to be a potential therapeutic target. Using a stopped-flow analysis, we showed that propofol (2,6-diisopropylphenol), a general anaesthetic drug, profoundly inhibited the osmotic water permeability of AQP4 proteoliposomes in the presence of Zn²⁺. This propofol inhibition was not observed in AQP1, suggesting the specificity for AQP4. In addition, the inhibitory effects of propofol could be reversed by the removal of Zn²⁺. Other lipid membrane fluidizers also similarly inhibited AQP4, suggesting that the modulation of protein-lipid interactions plays an essential role in the propofol-induced inhibition of AQP4. Accordingly, we used Blue native PAGE and showed that the profound inhibition caused by propofol in the presence of Zn²⁺ is coupled with the reversible clustering of AQP4 tetramers. Site-directed mutagenesis identified that Cys²⁵³, located at the membrane interface connecting to the C-terminal tail, is responsible for Zn²⁺-mediated propofol inhibition. Overall, we discovered that propofol specifically and reversibly inhibits AQP4 through the interaction between Zn²⁺ and Cys²⁵³. The findings provide new insight into the functional regulation of AQP4 and may facilitate the identification of novel AQP4-specific inhibitors.

摘要

水通道蛋白 4(AQP4)是一种主要表达在星形胶质细胞终足的水通道蛋白,在脑水肿形成中发挥重要作用,因此被认为是一个潜在的治疗靶点。我们使用停流分析发现,全身麻醉药物异丙酚(2,6-二异丙基苯酚)在存在 Zn²⁺的情况下,能显著抑制 AQP4 类脂蛋白体的渗透水通透性。这种异丙酚抑制作用在 AQP1 中并未观察到,提示其对 AQP4 的特异性。此外,Zn²⁺的去除可逆转异丙酚的抑制作用。其他脂质膜增溶剂也能类似地抑制 AQP4,提示蛋白-脂质相互作用的调节在异丙酚诱导的 AQP4 抑制中起着重要作用。因此,我们使用 Blue native PAGE 显示,在 Zn²⁺存在下,异丙酚引起的强烈抑制作用与 AQP4 四聚体的可逆聚集相关。定点突变鉴定出位于连接 C 末端尾部的膜界面的 Cys²⁵³,负责 Zn²⁺介导的异丙酚抑制作用。总的来说,我们发现异丙酚通过 Zn²⁺和 Cys²⁵³之间的相互作用特异性和可逆地抑制 AQP4。这些发现为 AQP4 的功能调节提供了新的见解,并可能有助于鉴定新型的 AQP4 特异性抑制剂。

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