Department of Mathematical Science and Advanced Technology, Japan Agency for Marine-Earth Science and Technology, Yokohama 236-0001, Japan;
Department of Chemical and Biological Engineering, Princeton University, Princeton, NJ 08544.
Proc Natl Acad Sci U S A. 2019 Dec 17;116(51):25440-25445. doi: 10.1073/pnas.1916248116. Epub 2019 Nov 26.
Lipid droplets are cytoplasmic microscale organelles involved in energy homeostasis and handling of cellular lipids and proteins. The core structure is mainly composed of two kinds of neutral lipids, triglycerides and cholesteryl esters, which are coated by a phospholipid monolayer and proteins. Despite the liquid crystalline nature of cholesteryl esters, the connection between the lipid composition and physical states is poorly understood. Here, we present a universal intracellular phase diagram of lipid droplets, semiquantitatively consistent with the in vitro phase diagram, and reveal that cholesterol esters cause the liquid-liquid crystal phase transition under near-physiological conditions. We moreover combine in vivo and in vitro studies, together with the theory of confined liquid crystals, to suggest that the radial molecular alignments in the liquid crystallized lipid droplets are caused by an anchoring force at the droplet surface. Our findings on the phase transition of lipid droplets and resulting molecular organization contribute to a better understanding of their biological functions and diseases.
脂滴是参与细胞内能量平衡以及处理细胞脂质和蛋白质的细胞质微尺度细胞器。核心结构主要由两种中性脂质,甘油三酯和胆固醇酯组成,它们被磷脂单层和蛋白质包裹。尽管胆固醇酯具有液晶态性质,但脂质组成与物理状态之间的联系还知之甚少。在这里,我们提出了一个普遍的脂滴细胞内相图,与体外相图半定量一致,并揭示了胆固醇酯在接近生理条件下引起液-液相变。此外,我们结合体内和体外研究,以及受限液晶理论,提出在液晶化的脂滴中,径向分子排列是由液滴表面的锚定力引起的。我们关于脂滴相转变和由此产生的分子组织的发现有助于更好地理解它们的生物学功能和疾病。