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原子力显微镜下的脂质自组装

Lipid Self-Assemblies under the Atomic Force Microscope.

机构信息

Instituto Biofisika (CSIC, UPV/EHU), Universidad del País Vasco, 48940 Leioa, Spain.

出版信息

Int J Mol Sci. 2021 Sep 18;22(18):10085. doi: 10.3390/ijms221810085.

Abstract

Lipid model membranes are important tools in the study of biophysical processes such as lipid self-assembly and lipid-lipid interactions in cell membranes. The use of model systems to adequate and modulate complexity helps in the understanding of many events that occur in cellular membranes, that exhibit a wide variety of components, including lipids of different subfamilies (e.g., phospholipids, sphingolipids, sterols…), in addition to proteins and sugars. The capacity of lipids to segregate by themselves into different phases at the nanoscale (nanodomains) is an intriguing feature that is yet to be fully characterized in vivo due to the proposed transient nature of these domains in living systems. Model lipid membranes, instead, have the advantage of (usually) greater phase stability, together with the possibility of fully controlling the system lipid composition. Atomic force microscopy (AFM) is a powerful tool to detect the presence of meso- and nanodomains in a lipid membrane. It also allows the direct quantification of nanomechanical resistance in each phase present. In this review, we explore the main kinds of lipid assemblies used as model membranes and describe AFM experiments on model membranes. In addition, we discuss how these assemblies have extended our knowledge of membrane biophysics over the last two decades, particularly in issues related to the variability of different model membranes and the impact of supports/cytoskeleton on lipid behavior, such as segregated domain size or bilayer leaflet uncoupling.

摘要

脂质模型膜是研究生物物理过程(如细胞膜中脂质自组装和脂质-脂质相互作用)的重要工具。使用模型系统来充分和调节复杂性有助于理解许多发生在细胞膜中的事件,这些事件表现出广泛的组成部分,包括不同亚家族的脂质(例如磷脂、鞘脂、固醇等),以及蛋白质和糖。脂质在纳米尺度(纳米域)上自行分离成不同相的能力是一个有趣的特征,由于这些域在活系统中具有拟短暂的性质,因此尚未在体内得到充分表征。模型脂质膜具有(通常)更大的相稳定性的优势,同时还可以完全控制系统脂质组成。原子力显微镜(AFM)是检测脂质膜中中相和纳米域存在的有力工具。它还允许直接定量存在于每个相的纳米力学阻力。在这篇综述中,我们探讨了用作模型膜的主要脂质组装类型,并描述了模型膜上的 AFM 实验。此外,我们讨论了这些组装如何在过去二十年中扩展了我们对膜生物物理学的认识,特别是在与不同模型膜的可变性和支持物/细胞骨架对脂质行为的影响相关的问题上,例如分隔域大小或双层叶瓣解耦。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f690/8467407/5248692db1e8/ijms-22-10085-g003.jpg

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