SRSMC , UMR 7019 Université de Lorraine CNRS , Vandoeuvre-les-Nancy F-54500 , France.
Laboratoire International Associé CNRS and University of Illinois at Urbana-Champaign , Vandoeuvre-les-Nancy F-54506 , France.
Chem Rev. 2018 Apr 11;118(7):3559-3607. doi: 10.1021/acs.chemrev.7b00570. Epub 2018 Feb 28.
Membrane proteins perform a host of vital cellular functions. Deciphering the molecular mechanisms whereby they fulfill these functions requires detailed biophysical and structural investigations. Detergents have proven pivotal to extract the protein from its native surroundings. Yet, they provide a milieu that departs significantly from that of the biological membrane, to the extent that the structure, the dynamics, and the interactions of membrane proteins in detergents may considerably vary, as compared to the native environment. Understanding the impact of detergents on membrane proteins is, therefore, crucial to assess the biological relevance of results obtained in detergents. Here, we review the strengths and weaknesses of alkyl phosphocholines (or foscholines), the most widely used detergent in solution-NMR studies of membrane proteins. While this class of detergents is often successful for membrane protein solubilization, a growing list of examples points to destabilizing and denaturing properties, in particular for α-helical membrane proteins. Our comprehensive analysis stresses the importance of stringent controls when working with this class of detergents and when analyzing the structure and dynamics of membrane proteins in alkyl phosphocholine detergents.
膜蛋白执行着许多重要的细胞功能。为了揭示它们实现这些功能的分子机制,需要进行详细的生物物理和结构研究。去污剂已被证明是从其天然环境中提取蛋白质的关键。然而,它们提供的环境与生物膜有很大的不同,以至于膜蛋白在去污剂中的结构、动力学和相互作用可能与天然环境有很大的不同。因此,了解去污剂对膜蛋白的影响对于评估在去污剂中获得的结果的生物学相关性至关重要。在这里,我们回顾了烷基磷酸胆碱(或 foscholines)的优缺点,这是在溶液-NMR 研究膜蛋白中最广泛使用的去污剂。虽然这类去污剂通常能成功地溶解膜蛋白,但越来越多的例子表明它们具有不稳定和变性的特性,特别是对α-螺旋膜蛋白。我们的综合分析强调了在使用这类去污剂以及在分析烷基磷酸胆碱去污剂中膜蛋白的结构和动力学时进行严格控制的重要性。