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基于间苯二酚芳烃的表面糖苷:洗涤剂柔韧性对膜蛋白稳定性的影响。

Resorcinarene-Based Facial Glycosides: Implication of Detergent Flexibility on Membrane-Protein Stability.

作者信息

Hussain Hazrat, Du Yang, Tikhonova Elena, Mortensen Jonas S, Ribeiro Orquidea, Santillan Claudia, Das Manabendra, Ehsan Muhammad, Loland Claus J, Guan Lan, Kobilka Brian K, Byrne Bernadette, Chae Pil Seok

机构信息

Department of Bionanotechnology, Hanyang University, Ansan, 155-88, Korea.

Molecular and Cellular Physiology, Stanford University, Stanford, CA, 94305, USA.

出版信息

Chemistry. 2017 May 17;23(28):6724-6729. doi: 10.1002/chem.201605016. Epub 2017 Apr 20.

Abstract

As a membrane-mimetic system, detergent micelles are popularly used to extract membrane proteins from lipid environments and to maintain their solubility and stability in an aqueous medium. However, many membrane proteins encapsulated in conventional detergents tend to undergo structural degradation during extraction and purification, thus necessitating the development of new agents with enhanced properties. In the current study, two classes of new amphiphiles are introduced, resorcinarene-based glucoside and maltoside amphiphiles (designated RGAs and RMAs, respectively), for which the alkyl chains are facially segregated from the carbohydrate head groups. Of these facial amphiphiles, two RGAs (RGA-C11 and RGA-C13) conferred markedly enhanced stability to four tested membrane proteins compared to a gold-standard conventional detergent. The relatively high water solubility and micellar stability of the RGAs compared to the RMAs, along with their generally favourable behaviours for membrane protein stabilisation described here, are likely to be, at least in part, a result of the high conformational flexibility of these glucosides. This study suggests that flexibility could be an important factor in determining the suitability of new detergents for membrane protein studies.

摘要

作为一种膜模拟系统,去污剂胶束被广泛用于从脂质环境中提取膜蛋白,并在水性介质中维持其溶解性和稳定性。然而,许多包裹在传统去污剂中的膜蛋白在提取和纯化过程中往往会发生结构降解,因此需要开发具有增强性能的新型试剂。在本研究中,引入了两类新型两亲分子,基于间苯二酚芳烃的葡糖苷和麦芽糖苷两亲分子(分别命名为RGA和RMA),其烷基链与碳水化合物头部基团在表面上分离。在这些表面两亲分子中,与一种金标准传统去污剂相比,两种RGA(RGA-C11和RGA-C13)赋予四种测试膜蛋白显著增强的稳定性。与RMA相比,RGA具有相对较高的水溶性和胶束稳定性,以及此处所述的对膜蛋白稳定化的总体有利行为,这可能至少部分是由于这些葡糖苷具有高构象灵活性。这项研究表明,灵活性可能是决定新型去污剂是否适合膜蛋白研究的一个重要因素。

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