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首页> 外文期刊>Nanoscale >A bioinspired glycopolymer for capturing membrane proteins in native-like lipid-bilayer nanodiscs
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A bioinspired glycopolymer for capturing membrane proteins in native-like lipid-bilayer nanodiscs

机译:一个bioinspired glycopolymer捕捉膜蛋白质类原生脂双分子层nanodiscs

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摘要

Amphiphilic copolymers that directly extract membrane proteins and lipids from cellular membranes to form nanodiscs combine the advantages of harsher membrane mimics with those of a native-like membrane environment. Among the few commercial polymers that are capable of forming nanodiscs, alternating diisobutylene/maleic acid (DIBMA) copolymers have gained considerable popularity as gentle and UV-transparent alternatives to aromatic polymers. However, their moderate hydrophobicities and high electric charge densities render all existing aliphatic copolymers rather inefficient under near-physiological conditions. Here, we introduce Glyco-DIBMA, a bioinspired glycopolymer that possesses increased hydrophobicity and reduced charge density but nevertheless retains excellent solubility in aqueous solutions. Glyco-DIBMA outperforms established aliphatic copolymers in that it solubilizes lipid vesicles of various compositions much more efficiently, thereby furnishing smaller, more narrowly distributed nanodiscs that preserve a bilayer architecture and exhibit rapid lipid exchange. We demonstrate the superior performance of Glyco-DIBMA in preparative and analytical applications by extracting a broad range of integral membrane proteins from cellular membranes and further by purifying a membrane-embedded voltage-gated K+ channel, which was fluorescently labeled and analyzed with the aid of microfluidic diffusional sizing (MDS) directly within native-like lipid-bilayer nanodiscs.
机译:两亲性共聚物直接提取从细胞的膜蛋白和脂质膜形成nanodiscs结合严酷的膜模拟与优势膜类原生环境。一些有能力的商业聚合物形成nanodiscs,交替二异丁烯、顺丁烯二酸(DIBMA)共聚物获得了相当大的知名度和温柔将替代芳香聚合物。然而,他们温和的疏水性和高电荷密度呈现所有现有的脂肪族共聚物,而效率低下near-physiological条件。Glyco-DIBMA, bioinspired glycopolymer具有疏水性的增加和减少电荷密度但保留好溶解在水的解决方案。优于建立脂肪族共聚物它溶解脂质囊泡各种成分更有效,从而家具更小、更狭隘的分布nanodiscs保存一个双层架构并表现出快速脂质交换。Glyco-DIBMA的性能优越制备和分析应用程序膜提取范围广泛的积分从细胞膜蛋白,进一步通过净化的一种电压门控K +通道,荧光标记和分析了微流体扩散的援助分级(MDS)直接在本土一样脂双分子层nanodiscs。

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