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蛋白激酶 Cδ 第二富含半胱氨酸结构域中麻醉结合位点的结构与功能特征。

Structural and functional characterization of an anesthetic binding site in the second cysteine-rich domain of protein kinase Cδ*.

机构信息

Department of Anesthesia and Critical Care, Massachusetts General Hospital, Boston, MA, USA.

出版信息

Biophys J. 2012 Dec 5;103(11):2331-40. doi: 10.1016/j.bpj.2012.10.034.

Abstract

Elucidating the principles governing anesthetic-protein interactions requires structural determinations at high resolutions not yet achieved with ion channels. Protein kinase C (PKC) activity is modulated by general anesthetics. We solved the structure of the phorbol-binding domain (C1B) of PKCδ complexed with an ether (methoxymethylcycloprane) and with an alcohol (cyclopropylmethanol) at 1.36-Å resolution. The cyclopropane rings of both agents displace a single water molecule in a surface pocket adjacent to the phorbol-binding site, making van der Waals contacts with the backbone and/or side chains of residues Asn-237 to Ser-240. Surprisingly, two water molecules anchored in a hydrogen-bonded chain between Thr-242 and Lys-260 impart elasticity to one side of the binding pocket. The cyclopropane ring takes part in π-acceptor hydrogen bonds with the amide of Met-239. There is a crucial hydrogen bond between the oxygen atoms of the anesthetics and the hydroxyl of Tyr-236. A Tyr-236-Phe mutation results in loss of binding. Thus, both van der Waals interactions and hydrogen-bonding are essential for binding to occur. Ethanol failed to bind because it is too short to benefit from both interactions. Cyclopropylmethanol inhibited phorbol-ester-induced PKCδ activity, but failed to do so in PKCδ containing the Tyr-236-Phe mutation.

摘要

阐明麻醉蛋白相互作用的原理需要高分辨率的结构测定,而目前尚未实现离子通道的高分辨率结构测定。蛋白激酶 C(PKC)的活性受全身麻醉剂调节。我们解析了与醚(甲氧基甲基环丙烷)和醇(环丙基甲醇)结合的 PKCδ 的佛波醇结合域(C1B)的结构,分辨率为 1.36Å。两种试剂的环丙烷环取代了邻近佛波醇结合位点的表面口袋中的单个水分子,与残基 Asn-237 到 Ser-240 的主链和/或侧链形成范德华相互作用。令人惊讶的是,两个水分子通过 Thr-242 和 Lys-260 之间氢键连接的链锚定在结合口袋的一侧,赋予其弹性。环丙烷环与 Met-239 的酰胺形成 π-受体氢键。麻醉剂的氧原子与 Tyr-236 的羟基之间存在关键的氢键。Tyr-236-Phe 突变导致结合丧失。因此,范德华相互作用和氢键对于结合的发生都是必不可少的。由于乙醇太短,无法同时受益于这两种相互作用,因此无法结合。环丙基甲醇抑制佛波醇诱导的 PKCδ 活性,但在含有 Tyr-236-Phe 突变的 PKCδ 中则无法抑制。

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