Division of Endocrinology, New York University Grossman School of Medicine, New York, New York, USA.
Curr Opin Lipidol. 2024 Apr 1;35(2):85-92. doi: 10.1097/MOL.0000000000000918. Epub 2024 Feb 15.
Lipid droplets are increasingly recognized as distinct intracellular organelles that have functions exclusive to the storage of energetic lipids. Lipid droplets modulate macrophage inflammatory phenotype, control the availability of energy for muscle function, store excess lipid, sequester toxic lipids, modulate mitochondrial activity, and allow transfer of fatty acids between tissues.
There have been several major advances in our understanding of the formation, dissolution, and function of this organelle during the past two years. These include new information on movement and partition of amphipathic proteins between the cytosol and lipid droplet surface, molecular determinants of lipid droplet formation, and pathways leading to lipid droplet hydrophobic lipid formation. Rapid advances in mitochondrial biology have also begun to define differences in their function and partnering with lipid droplets to modulate lipid storage versus oxidation.
This relationship of lipid droplets biology and cellular function provides new understanding of an important cellular organelle that influences muscle function, adipose lipid storage, and diseases of lipotoxicity.
脂滴作为一种独特的细胞内细胞器,其功能不仅限于储存能量脂质,近年来受到越来越多的关注。脂滴可调节巨噬细胞的炎症表型,控制肌肉功能的能量供应,储存多余的脂质,隔离有毒脂质,调节线粒体活性,并允许脂肪酸在组织间转移。
在过去两年中,我们对该细胞器的形成、溶解和功能有了一些重要的新认识。这些认识包括关于亲脂性蛋白在细胞质和脂滴表面之间的运动和分配、脂滴形成的分子决定因素以及导致脂滴疏水性脂质形成的途径的新信息。线粒体生物学的快速发展也开始定义它们与脂滴在调节脂质储存与氧化方面的功能差异及其相互作用。
脂滴生物学与细胞功能的这种关系为影响肌肉功能、脂肪脂质储存以及脂毒性疾病的重要细胞细胞器提供了新的认识。