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Optimization of the Design and Preparation of Nanoscale Phospholipid Bilayers for its Application to Solution NMR

机译:用于溶液核磁共振的纳米级磷脂双层膜的设计与制备的优化

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摘要

Despite arduous efforts and recent technological developments structural investigation of integral membrane proteins remains a challenge. The primary deterrents include difficulties with their expression, low inherent solubility and various problems associated with existing membrane mimicking systems. A relatively new class of membrane mimetics, nanodiscs, has been developed as a promising alternative. Although nanodiscs have been proven successful for several biophysical applications, they yet remain to become the system of preferred choice for structure determination. We have hereby made nanodiscs more suitable for solution NMR applications by reducing the diameter of the self-assembly complex to its potential limit. We achieved a noticeable improvement in the quality of NMR spectra obtained for the transmembrane and cytoplasmic domains of integrin αIIb incorporated into these smaller discs rendering them susceptible for a thorough structural investigation. We also present an on-column method for a rapid, efficient, single step preparation of protein incorporated nanodiscs at high concentrations. These discs have been fully characterized by transmission electron microscopy, dynamic light scattering and differential scanning calorimetry.
机译:尽管经过了艰苦的努力和最近的技术发展,整体膜蛋白的结构研究仍然是一个挑战。主要的威慑因素包括表达困难,固有溶解度低以及与现有膜模拟系统相关的各种问题。相对较新的一类膜模拟物纳米圆盘已被开发为有前途的替代方法。尽管纳米光盘已被证明在多种生物物理应用中是成功的,但它们仍然成为确定结构的首选系统。通过将自组装复合物的直径减小到其潜在极限,我们从而使纳米光盘更适合溶液NMR应用。对于整合入这些较小光盘的整合素αIIb的跨膜和胞质结构域,我们在NMR光谱质量方面取得了显着改善,使其易于进行彻底的结构研究。我们还提出了一种柱上方法,用于快速,高效,一步法制备高浓度蛋白质结合的纳米光盘。这些光盘已通过透射电子显微镜,动态光散射和差示扫描量热法进行了全面表征。

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