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Lipid domains in bacterial membranes and the action of antimicrobial agents.

机译:细菌膜中的脂质结构域和抗菌剂的作用。

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摘要

There has been increasing interest in recent years in describing the lateral organization of membranes and the formation of membrane domains. Much of the focus in this area has been on the formation of cholesterol-rich domains in mammalian membranes. However, it is likely that there are domains in all biological membranes. One of the challenges has been to define the chemical composition, lifetime and size of these domains. There is evidence that bacteria have domains that are enriched in cardiolipin. In addition, the formation of lipid domains can be induced in bacteria by clustering negatively charged lipids with polycationic substances. Many antimicrobial compounds have multiple positive charges. Such polycationic compounds can sequester anionic lipids to induce lipid phase separation. The molecular interactions among lipids and their lateral packing density will be different in a domain from its environment. This will lead to phase boundary defects that will lower the permeability barrier between the cell and its surroundings. The formation of these clusters of anionic lipids may also alter the stability or composition of existing membrane domains that may affect bacterial function. Interestingly many antimicrobial agents are polycationic and therefore likely have some effect in promoting lipid phase segregation between anionic and zwitterionic lipids. However, this mechanism is expected to be most important for substances with sequential positive charges contained within a flexible molecule that can adapt to the arrangement of charged groups on the surface of the bacterial cell. When this mechanism is dominant it can allow the prediction of the bacterial species that will be most affected by the agent as a consequence of the nature of the lipid composition of the bacterial membrane.
机译:近年来,人们对描述膜的横向组织和膜结构域的形成越来越感兴趣。这个领域的许多焦点都集中在哺乳动物膜上富含胆固醇的结构域的形成上。但是,很可能在所有生物膜中都存在域。挑战之一是定义这些域的化学组成,寿命和大小。有证据表明细菌具有富含心磷脂的结构域。另外,通过将带负电荷的脂质与聚阳离子物质聚集在一起,可以在细菌中诱导脂质结构域的形成。许多抗菌化合物具有多个正电荷。这样的聚阳离子化合物可以隔离阴离子脂质以诱导脂质相分离。脂质之间的分子相互作用及其横向堆积密度在其环境范围内将有所不同。这将导致相界缺陷,从而降低电池及其周围环境之间的渗透屏障。这些阴离子脂质簇的形成也可能改变可能影响细菌功能的现有膜结构域的稳定性或组成。有趣的是,许多抗菌剂是聚阳离子的,因此可能对促进阴离子和两性离子脂质之间的脂质相分离具有一定作用。但是,对于对于能够适应细菌细胞表面上带电基团的排列的柔性分子中含有顺序带正电荷的物质而言,预期该机制最重要。当该机制起主导作用时,由于细菌膜脂质成分的性质,它可以预测受该试剂影响最大的细菌种类。

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