Lee Tzong-Hsien, Charchar Patrick, Separovic Frances, Reid Gavin E, Yarovsky Irene, Aguilar Marie-Isabel
Department of Biochemistry and Molecular Biology, Monash University Clayton VIC 3800 Australia
School of Engineering, RMIT University Melbourne Victoria 3001 Australia.
Chem Sci. 2024 Jan 31;15(10):3408-3427. doi: 10.1039/d3sc04523d. eCollection 2024 Mar 6.
It is now evident that the cell manipulates lipid composition to regulate different processes such as membrane protein insertion, assembly and function. Moreover, changes in membrane structure and properties, lipid homeostasis during growth and differentiation with associated changes in cell size and shape, and responses to external stress have been related to drug resistance across mammalian species and a range of microorganisms. While it is well known that the biomembrane is a fluid self-assembled nanostructure, the link between the lipid components and the structural properties of the lipid bilayer are not well understood. This perspective aims to address this topic with a view to a more detailed understanding of the factors that regulate bilayer structure and flexibility. We describe a selection of recent studies that address the dynamic nature of bacterial lipid diversity and membrane properties in response to stress conditions. This emerging area has important implications for a broad range of cellular processes and may open new avenues of drug design for selective cell targeting.
现在很明显,细胞通过操纵脂质组成来调节不同的过程,如膜蛋白插入、组装和功能。此外,膜结构和性质的变化、生长和分化过程中的脂质稳态以及细胞大小和形状的相关变化,以及对外部应激的反应,都与哺乳动物物种和一系列微生物的耐药性有关。虽然众所周知生物膜是一种流体自组装纳米结构,但脂质成分与脂质双层结构性质之间的联系尚未得到很好的理解。这篇综述旨在探讨这个话题,以便更详细地了解调节双层结构和柔韧性的因素。我们描述了一系列近期研究,这些研究探讨了细菌脂质多样性的动态性质以及应激条件下的膜性质。这个新兴领域对广泛的细胞过程具有重要意义,可能为选择性细胞靶向的药物设计开辟新途径。