Bacle Amélie, Gautier Romain, Jackson Catherine L, Fuchs Patrick F J, Vanni Stefano
Institut Jacques Monod, UMR 7592, CNRS Université Paris-Diderot, Sorbonne Paris Cité, Paris, France.
Université Cote d'Azur, Centre National de la Recherche Scientifique, Institut de Pharmacologie Moléculaire et Cellulaire, Sophia Antipolis, France.
Biophys J. 2017 Apr 11;112(7):1417-1430. doi: 10.1016/j.bpj.2017.02.032.
Intracellular lipid droplets (LDs) are the main cellular site of metabolic energy storage. Their structure is unique inside the cell, with a core of esterified fatty acids and sterols, mainly triglycerides and sterol esters, surrounded by a single monolayer of phospholipids. Numerous peripheral proteins, including several that were previously associated with intracellular compartments surrounded by a lipid bilayer, have been recently shown to target the surface of LDs, but how they are able to selectively target this organelle remains largely unknown. Here, we use atomistic and coarse-grained molecular dynamics simulations to investigate the molecular properties of the LD surface and to characterize how it differs from that of a lipid bilayer. Our data suggest that although several surface properties are remarkably similar between the two structures, key differences originate from the interdigitation between surface phospholipids and core neutral lipids that occurs in LDs. This property is extremely sensitive to membrane undulations, unlike in lipid bilayers, and it strongly affects both lipid-packing defects and the lateral pressure profile. We observed a marked change in overall surface properties for surface tensions >10 mN/m, indicative of a bimodal behavior. Our simulations provide a comprehensive molecular characterization of the unique surface properties of LDs and suggest how the molecular properties of the surface lipid monolayer can be modulated by the underlying neutral lipids.
细胞内脂滴(LDs)是代谢能量储存的主要细胞场所。它们在细胞内的结构独特,有一个由酯化脂肪酸和固醇组成的核心,主要是甘油三酯和固醇酯,被单层磷脂包围。最近发现,许多外周蛋白,包括一些以前与被脂质双层包围的细胞内区室相关的蛋白,都靶向脂滴表面,但它们如何能够选择性地靶向这个细胞器在很大程度上仍然未知。在这里,我们使用原子和粗粒度分子动力学模拟来研究脂滴表面的分子特性,并表征其与脂质双层表面的差异。我们的数据表明,尽管这两种结构之间的一些表面特性非常相似,但关键差异源于脂滴中表面磷脂和核心中性脂质之间的相互交错。与脂质双层不同,这种特性对膜波动极其敏感,并且强烈影响脂质堆积缺陷和侧向压力分布。我们观察到表面张力>10 mN/m时整体表面特性有明显变化,表明存在双峰行为。我们的模拟提供了脂滴独特表面特性的全面分子表征,并揭示了表面脂质单层的分子特性如何受到潜在中性脂质的调节。