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Quantifying size distributions of nanolipoprotein particles with single-particle analysis and molecular dynamic simulations.

机译:用单颗粒分析和分子动力学模拟定量纳米脂蛋白颗粒的尺寸分布。

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摘要

Self-assembly of purified apolipoproteins and phospholipids results in the formation of nanometer-sized lipoprotein complexes, referred to as nanolipoprotein particles (NLPs). These bilayer constructs are fully soluble in aqueous environments and hold great promise as a model system to aid in solubilizing membrane proteins. Size variability in the self-assembly process has been recognized for some time, yet limited studies have been conducted to examine this phenomenon. Understanding the source of this heterogeneity may lead to methods to mitigate heterogeneity or to control NLP size, which may be important for tailoring NLPs for specific membrane proteins. Here, we have used atomic force microscopy, ion mobility spectrometry, and transmission electron microscopy to quantify NLP size distributions on the single-particle scale, specifically focusing on assemblies with 1,2-dimyristoyl-sn-glycero-3-phosphocholine (DMPC) and a recombinant apolipoprotein E variant containing the N-terminal 22 kDa fragment (E422k). Four discrete sizes of E422k/DMPC NLPs were identified by all three techniques, with diameters centered at approximately 14.5, 19, 23.5, and 28 nm. Computer simulations suggest that these sizes are related to the structure and number of E422k lipoproteins surrounding the NLPs and particles with an odd number of lipoproteins are consistent with the double-belt model, in which at least one lipoprotein adopts a hairpin structure.
机译:纯化载脂蛋白和磷脂的自组装导致形成纳米级脂蛋白复合物,称为纳米脂蛋白颗粒(NLP)。这些双层构建体完全可溶于水环境,并有望作为增溶膜蛋白的模型系统。人们已经认识到自组装过程中的尺寸可变性已有一段时间,但是进行了有限的研究以检验这种现象。了解这种异质性的来源可能会导致减轻异质性或控制NLP大小的方法,这对于为特定膜蛋白定制NLP可能很重要。在这里,我们已经使用原子力显微镜,离子迁移谱和透射电子显微镜来量化单颗粒尺度上的NLP尺寸分布,特别是针对具有1,2-二肉豆蔻酰基-sn-甘油-3-磷酸胆碱(DMPC)的组件以及含有N末端22kDa片段的重组载脂蛋白E变体(E422k)。通过所有三种技术可以识别出四个离散尺寸的E422k / DMPC NLP,其直径集中在大约14.5、19、23.5和28 nm处。计算机模拟表明,这些大小与NLP周围的E422k脂蛋白的结构和数量有关,并且具有奇数个脂蛋白的颗粒与双带模型一致,其中至少一种脂蛋白采用发夹结构。

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