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双层不对称性在生物膜中的重要性:来自模型膜的见解。

The Importance of Bilayer Asymmetry in Biological Membranes: Insights from Model Membranes.

作者信息

Oliveira Igor S, Pinheiro Guilherme X, Sa Maria Luana B, Gurgel Pedro Henrique L O, Pizzol Samuel U, Itri Rosangela, Henriques Vera B, Enoki Thais A

机构信息

Institute of Physics, University of Sao Paulo, Sao Paulo 05508-090, Brazil.

出版信息

Membranes (Basel). 2025 Mar 3;15(3):79. doi: 10.3390/membranes15030079.

Abstract

This mini-review intends to highlight the importance of bilayer asymmetry. Biological membranes are complex structures that are a physical barrier separating the external environment from the cellular content. This complex bilayer comprises an extensive lipid repertory, suggesting that the different lipid structures might play a role in the membrane. Interestingly, this vast repertory of lipids is asymmetrically distributed between leaflets that form the lipid bilayer. Here, we discuss the properties of the plasma membrane from the perspective of experimental model membranes, consisting of simplified and controlled systems. We summarize some crucial features of the exoplasmic (outer) and cytoplasmic (inner) leaflets observed through investigations using symmetric and asymmetric membranes. Symmetric model membranes for the exoplasmic leaflet have a unique lipid composition that might form a coexistence of phases, namely the liquid disordered and liquid order phases. These phase domains may appear in different sizes and shapes depending on lipid composition and lipid-lipid interactions. In contrast, symmetric model membranes for the cytoplasmic leaflet form a fluid phase. We discuss the outcomes reported in the literature for asymmetric bilayers, which vary according to lipid compositions and, consequently, reflect different intra- and inter-leaflet interactions. Interestingly, the asymmetric bilayer could show induced domains in the inner leaflet, or it could decrease the tendency of the outer leaflet to phase separation. If cells regulate the lipid composition of the plasma membrane, they can adjust the existence and sizes of the domains by tuning the lipid composition.

摘要

本综述旨在强调双层不对称性的重要性。生物膜是复杂的结构,是将外部环境与细胞内容物分隔开的物理屏障。这种复杂的双层包含大量的脂质种类,这表明不同的脂质结构可能在膜中发挥作用。有趣的是,这种大量的脂质种类在构成脂质双层的小叶之间呈不对称分布。在这里,我们从实验模型膜的角度讨论质膜的特性,实验模型膜由简化和可控的系统组成。我们总结了通过使用对称和不对称膜进行研究所观察到的外质(外)小叶和细胞质(内)小叶的一些关键特征。用于外质小叶的对称模型膜具有独特的脂质组成,可能形成相共存,即液相无序相和液相有序相。这些相域可能会根据脂质组成和脂质-脂质相互作用而呈现出不同的大小和形状。相比之下,用于细胞质小叶的对称模型膜形成流体相。我们讨论了文献中报道的不对称双层的结果,这些结果根据脂质组成而有所不同,因此反映了不同的小叶内和小叶间相互作用。有趣的是,不对称双层可能在内小叶中显示出诱导域,或者它可能降低外小叶相分离的趋势。如果细胞调节质膜的脂质组成,它们可以通过调整脂质组成来调节域的存在和大小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf9b/11943618/a10e46edff29/membranes-15-00079-g001.jpg

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