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Applications of phospholipid bilayer nanodiscs in the study of membranes and membrane proteins.

机译:磷脂双层纳米光盘在膜和膜蛋白研究中的应用。

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摘要

Phospholipid bilayer Nanodiscs are novel model membranes derived from high-density lipoprotein particles and have proven to be useful in studies of membrane proteins. Membrane protein enzymology has been hampered by the inherent insolubility of membrane proteins in aqueous environments and has necessitated the use of model membranes such as liposomes and detergent-stabilized micelles. Current model membranes display a polydisperse particle size distribution and can suffer from problems of inconsistency and instability. It is also unclear how well they mimic biological lipid bilayers. In contrast, Nanodiscs, the particle size of which is constrained by a coat of scaffold proteins, are relatively monodisperse, stable model membranes with a "nativelike" lipid bilayer. Nanodiscs have already been used to study a variety of membrane proteins, including cytochrome P450s, seven-transmembrane proteins, and bacterial chemoreceptors. These proteins are simultaneously monomerized, solubilized, and incorporated into the well-defined membrane environment provided by Nanodiscs. Nanodiscs may also provide useful insights into the thermodynamics and biophysics of biological membranes and binding of small molecules to membranes.
机译:磷脂双层纳米光盘是衍生自高密度脂蛋白颗粒的新型模型膜,并已被证明可用于研究膜蛋白。膜蛋白的酶学已被膜蛋白在水环境中固有的不溶性所阻碍,因此必须使用模型膜,如脂质体和去污剂稳定的胶束。当前的模型膜表现出多分散的粒度分布并且可能遭受不一致和不稳定的问题。还不清楚它们模拟生物脂质双层的效果如何。相反,其纳米颗粒的粒径受支架蛋白涂层限制的纳米盘是相对单分散的,具有“天然”脂质双层的稳定模型膜。纳米光盘已经用于研究多种膜蛋白,包括细胞色素P450,七跨膜蛋白和细菌化学感受器。这些蛋白质同时被单体化,溶解并掺入由Nanodiscs提供的轮廓分明的膜环境中。纳米光盘还可以提供有关生物膜的热力学和生物物理学以及小分子与膜结合的有用见解。

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