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与对称季铵化合物结合的KcsA结构揭示了一个疏水结合位点。

Structures of KcsA in complex with symmetrical quaternary ammonium compounds reveal a hydrophobic binding site.

作者信息

Lenaeus Michael J, Burdette Dylan, Wagner Tobias, Focia Pamela J, Gross Adrian

机构信息

Department of Molecular Pharmacology and Biological Chemistry, Northwestern University Medical School , 303 East Chicago Avenue, Chicago, Illinois 60611, United States.

出版信息

Biochemistry. 2014 Aug 19;53(32):5365-73. doi: 10.1021/bi500525s. Epub 2014 Aug 8.

Abstract

Potassium channels allow for the passive movement of potassium ions across the cell membrane and are instrumental in controlling the membrane potential in all cell types. Quaternary ammonium (QA) compounds block potassium channels and have long been used to study the functional and structural properties of these channels. Here we describe the interaction between three symmetrical hydrophobic QAs and the prokaryotic potassium channel KcsA. The structures demonstrate the presence of a hydrophobic pocket between the inner helices of KcsA and provide insight into the binding site and blocking mechanism of hydrophobic QAs. The structures also reveal a structurally hidden pathway between the central cavity and the outside membrane environment reminiscent of the lateral fenestration observed in sodium channels that can be accessed through small conformational changes in the pore wall. We propose that the hydrophobic binding pocket stabilizes the alkyl chains of long-chain QA molecules and may play a key role in hydrophobic drug binding in general.

摘要

钾通道允许钾离子被动穿过细胞膜,对控制所有细胞类型的膜电位至关重要。季铵(QA)化合物可阻断钾通道,长期以来一直用于研究这些通道的功能和结构特性。在此,我们描述了三种对称疏水QA与原核钾通道KcsA之间的相互作用。这些结构表明KcsA内部螺旋之间存在一个疏水口袋,并深入了解了疏水QA的结合位点和阻断机制。这些结构还揭示了中央腔与外膜环境之间一条结构上隐藏的通道,类似于在钠通道中观察到的侧向窗孔,可通过孔壁的小构象变化进入。我们认为,疏水结合口袋可稳定长链QA分子的烷基链,总体上可能在疏水药物结合中起关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fa8/4139162/fb0ddc933237/bi-2014-00525s_0001.jpg

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