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Conformationally Preorganized Diastereomeric Norbornane-Based Maltosides for Membrane Protein Study: Implications of Detergent Kink for Micellar Properties

机译:膜蛋白研究的构型预先组织的非对映体降冰片基麦芽糖苷:胶束特性的洗涤剂扭结的影响

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摘要

Detergents are essential tools for functional and structural studies of membrane proteins. However, conventional detergents are limited in their scope and utility, particularly for eukaryotic membrane proteins. Thus, there are major efforts to develop new amphipathic agents with enhanced properties. Here, a novel class of diastereomeric agents with a preorganized conformation, designated norbornane-based maltosides (NBMs), were prepared and evaluated for their ability to solubilize and stabilize membrane proteins. Representative NBMs displayed enhanced behaviors compared to n-dodecyl-β-d-maltoside (DDM) for all membrane proteins tested. Efficacy of the individual NBMs varied depending on the overall detergent shape and alkyl chain length. Specifically, NBMs with no kink in the lipophilic region conferred greater stability to the proteins than NBMs with a kink. In addition, long alkyl chain NBMs were generally better at stabilizing membrane proteins than short alkyl chain agents. Furthermore, use of one well-behaving NBM enabled us to attain a marked stabilization and clear visualization of a challenging membrane protein complex using electron microscopy. Thus, this study not only describes novel maltoside detergents with enhanced protein-stabilizing properties but also suggests that overall detergent geometry has an important role in determining membrane protein stability. Notably, this is the first systematic study on the effect of detergent kinking on micellar properties and associated membrane protein stability.
机译:洗涤剂是用于膜蛋白功能和结构研究的重要工具。但是,常规去污剂的范围和用途受到限制,特别是对于真核膜蛋白。因此,在开发具有增强特性的新型两亲剂方面做出了巨大努力。在这里,制备了一类新的具有预组织构型的非对映异构体,称为降冰片烷基麦芽糖苷(NBMs),并评估了它们溶解和稳定膜蛋白的能力。对于所有测试的膜蛋白,与N-十二烷基-β-d-麦芽糖苷(DDM)相比,代表性NBM表现出增强的行为。各个NBM的功效取决于洗涤剂的整体形状和烷基链长。具体而言,在亲脂性区域中没有扭结的NBMs比具有扭结的NBMs赋予蛋白质更大的稳定性。此外,长烷基链NBM通常比短烷基链剂更能稳定膜蛋白。此外,使用一种行为良好的NBM使我们能够使用电子显微镜获得显着的稳定化和具有挑战性的膜蛋白复合物的清晰可视化。因此,该研究不仅描述了具有增强的蛋白质稳定特性的新型麦芽糖苷去污剂,而且还暗示了整个去污剂的几何形状在确定膜蛋白稳定性方面具有重要作用。值得注意的是,这是关于去污剂扭结对胶束特性和相关膜蛋白稳定性影响的第一个系统研究。

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