Intracellular Lipid Droplets: From Structure to Function.

Lipid insights Pub Date : 2017-12-13 eCollection Date: 2017-01-01 DOI:10.1177/1178635317745518
Stefano Vanni
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引用次数: 20

Abstract

Lipid droplets (LDs) are unique intracellular organelles that are mainly constituted by neutral lipids (triglycerides, sterol esters). As such they serve as the main site of energy storage in the cell and they are akin to oil emulsions in water. To prevent the direct exposure of the hydrophobic neutral lipids to the aqueous environment of the cytosol, LDs are surrounded by a monolayer of phospholipids that thus behave as a natural surfactant. This interfacial structure is rather unique inside the cell, but a molecular understanding of how the LD structure modulates its functions is still lacking, mainly due to technical challenges in both experimental and computational approaches to investigate oil-in-water emulsions. Recently, we have investigated the structure of LDs using a combination of existing and newly developed computational approaches that are optimized to study oil-water interfaces.1 Our simulations provide a comprehensive molecular characterization of the unique surface properties of LDs, suggesting structure-function relationship in several LD-related metabolic processes.

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细胞内脂滴:从结构到功能。
脂滴是一种独特的细胞内细胞器,主要由中性脂质(甘油三酯、甾醇酯)组成。因此,它们是细胞中能量储存的主要场所,它们类似于水中的油乳剂。为了防止疏水中性脂直接暴露在细胞质溶胶的水环境中,ld被单层磷脂包围,因此表现为天然表面活性剂。这种界面结构在细胞内是相当独特的,但是对LD结构如何调节其功能的分子理解仍然缺乏,主要是由于研究水包油乳液的实验和计算方法的技术挑战。最近,我们结合了现有的和新开发的计算方法来研究ld的结构,这些方法经过优化,可以研究油水界面我们的模拟提供了ld独特表面特性的全面分子表征,提示了几种ld相关代谢过程中的结构-功能关系。
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