Medical Biochemistry and Molecular Biology, Center for Molecular Signaling (PZMS), Faculty of Medicine, Saarland University, 66421 Homburg, Saar, Germany.
Laboratoire de Physique de l'École Normale Supérieure, ENS, Université PSL, CNRS, Sorbonne Université, Université de Paris, F-75005 Paris, France.
Semin Cell Dev Biol. 2020 Dec;108:4-13. doi: 10.1016/j.semcdb.2020.03.004. Epub 2020 Mar 20.
Lipid droplets (LDs), or oil bodies in plants, are specialized organelles that primarily serve as hubs of cellular metabolic energy storage and consumption. These ubiquitous cytoplasmic organelles are derived from the endoplasmic reticulum (ER) and consist of a hydrophobic neutral lipid core - mainly consisting of triglycerides and sterol esters - that is encircled by a phospholipid monolayer. The dynamic metabolic functions of the LDs are mainly executed and regulated by proteins on the monolayer surface. However, its unique architecture puts some structural constraints on the types of proteins that can associate with LDs. The lipid monolayer is decorated with either peripheral proteins or with integral membrane proteins that adopt a monotopic topology. Due to its oil-water interface, which is energetically costly, the LD surface happens to be favorable to the recruitment of many proteins involved in metabolic but also non-metabolic functions. We only started very recently to understand biophysical and biochemical principles controlling protein targeting to LDs. This review aims to summarize the most recent findings regarding this topic and proposes directions that will potentially lead to a better understanding of LD surface characteristics, as compared to bilayer membranes, and how that impacts protein-LD interactions.
脂滴(LDs),又称植物油脂体,是一种专门的细胞器,主要作为细胞代谢能量储存和消耗的中心。这些普遍存在的细胞质细胞器来源于内质网(ER),由一个疏水性中性脂质核心组成 - 主要由甘油三酯和固醇酯组成 - 被一个磷脂单层包围。LDs 的动态代谢功能主要由单层表面上的蛋白质来执行和调节。然而,其独特的结构对可以与 LDs 结合的蛋白质类型施加了一些结构限制。脂质单层上装饰有外周蛋白或采用单拓扑结构的整合膜蛋白。由于其油水界面具有能量成本,因此 LD 表面恰好有利于招募许多参与代谢和非代谢功能的蛋白质。我们直到最近才开始了解控制蛋白质靶向 LDs 的生物物理和生化原理。这篇综述旨在总结关于这个主题的最新发现,并提出一些方向,这些方向可能会导致我们更好地理解 LD 表面特性与双层膜相比有何不同,以及这如何影响蛋白质-LD 相互作用。