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合成十二烷基海藻糖糖苷清洁剂及其在膜蛋白研究中的性质。

Synthesis and properties of dodecyl trehaloside detergents for membrane protein studies.

机构信息

Department of Molecular Biology, The Scripps Research Institute, La Jolla, California 92037, United States.

出版信息

Langmuir. 2012 Jul 31;28(30):11173-81. doi: 10.1021/la3020404. Epub 2012 Jul 20.

Abstract

Sugar-based detergents, mostly derived from maltose or glucose, prevail in the extraction, solubilization, stabilization, and crystallization of membrane proteins. Inspired by the broad use of trehalose for protecting biological macromolecules and lipid bilayer structures, we synthesized new trehaloside detergents for potential applications in membrane protein research. We devised an efficient synthesis of four dodecyl trehalosides, each with the 12-carbon alkyl chain attached to different hydroxyl groups of trehalose, thus presenting a structurally diverse but related family of detergents. The detergent physical properties, including solubility, hydrophobicity, critical micelle concentration (CMC), and size of micelles, were evaluated and compared with the most popular maltoside analogue, β-D-dodecyl maltoside (DDM), which varied from each other due to distinct molecular geometries and possible polar group interactions in resulting micelles. Crystals of 2-dodecyl trehaloside (2-DDTre) were also obtained in methanol, and the crystal packing revealed multiple H-bonded interactions among adjacent trehalose groups. The few trehaloside detergents were tested for the solubilization and stabilization of the nociceptin/orphanin FQ peptide receptor (ORL1) and MsbA, which belong to the G-protein coupled receptor (GPCR) and ATP-binding cassette transporter families, respectively. Our results demonstrated the utility of trehaloside detergents as membrane protein solubilization reagents with the optimal detergents being protein dependent. Continuing development and investigations of trehaloside detergents are attractive, given their interesting and unique chemical-physical properties and potential interactions with membrane lipids.

摘要

基于麦芽糖或葡萄糖的糖基清洁剂在膜蛋白的提取、溶解、稳定和结晶中占主导地位。受海藻糖广泛用于保护生物大分子和脂质双层结构的启发,我们合成了新的海藻糖糖苷清洁剂,以期在膜蛋白研究中得到应用。我们设计了一种高效的合成 4 种十二烷基海藻糖苷的方法,每个糖苷都有 12 个碳原子的烷基链连接到海藻糖的不同羟基上,因此呈现出结构多样但相关的清洁剂家族。评估并比较了清洁剂的物理性质,包括溶解度、疏水性、临界胶束浓度(CMC)和胶束大小,与最受欢迎的麦芽糖类似物β-D-十二烷基麦芽糖(DDM)不同,这是由于它们的分子几何形状不同,以及可能在形成的胶束中存在极性基团相互作用。还在甲醇中获得了 2-十二烷基海藻糖苷(2-DDTre)的晶体,晶体堆积显示相邻海藻糖基团之间存在多种氢键相互作用。几种海藻糖清洁剂用于溶解和稳定孤啡肽/孤啡肽 FQ 肽受体(ORL1)和 MsbA,它们分别属于 G 蛋白偶联受体(GPCR)和 ATP 结合盒转运蛋白家族。我们的结果表明,海藻糖清洁剂可用作膜蛋白的溶解试剂,其最佳清洁剂取决于蛋白质。鉴于海藻糖清洁剂具有有趣且独特的理化性质以及与膜脂的潜在相互作用,因此继续开发和研究海藻糖清洁剂具有吸引力。

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