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双层包埋的脂滴被 perilipin-2 包裹后呈现出饼状。

Bilayer-Embedded Lipid Droplets Coated with Perilipin-2 Display a Pancake Shape.

机构信息

Experimental Physics and Center for Biophysics, Saarland University, 66123 Saarbrücken, Germany.

出版信息

Int J Mol Sci. 2023 Jan 20;24(3):2072. doi: 10.3390/ijms24032072.

Abstract

Lipid droplets (LD) are organelles localized in the membrane of the endoplasmic reticulum (ER) that play an important role in many biological functions. Free LDs that have been released from the ER membrane and are present in the cytosol resemble an oil-in-water emulsion. The surface of an LD is coated with a phospholipid monolayer, and the core of an LD is composed of neutral lipids. Adipose differentiation-related protein (ADRP), also known as perilipin-2, is a protein that surrounds the LD, together with the phospholipid monolayer. ADRP molecules are involved in assisting in the storage of neutral lipids within LDs. In this article, we focus our interest on the influence of ADRP molecules on the 3D shape of bilayer-embedded LDs and the diffusion of phospholipids in the monolayer covering LDs. For this study, we employed two different microfluidic setups: one to produce and explore bilayer-embedded LDs and a second one to mimic the surface of a single LD. Using the first setup, we demonstrate that ADRP molecules stay preferentially localized on the surfaces of bilayer-embedded LDs, and we study their 3D-shape in the presence of ADRP. Using the second setup, we performed FRAP experiments to measure the phospholipid diffusion on a model LD surface as a function of the ADRP concentration. Although the presence of proteins on the LD surface minimally affects the phospholipid and protein motility, ADRP appears to have a significant effect on the 3D structure of LDs embedded in the bilayer.

摘要

脂滴(LD)是定位于内质网(ER)膜中的细胞器,在许多生物学功能中发挥着重要作用。从 ER 膜中释放出来并存在于细胞质中的游离 LD 类似于油包水乳液。LD 的表面覆盖着一层磷脂单层,LD 的核心由中性脂质组成。脂肪分化相关蛋白(ADRP),也称为 perilipin-2,是一种包围 LD 的蛋白质,与磷脂单层一起。ADRP 分子参与协助将中性脂质储存在 LD 中。在本文中,我们关注 ADRP 分子对双层嵌入 LD 的 3D 形状和覆盖 LD 的单层中磷脂扩散的影响。为此,我们采用了两种不同的微流控装置:一种用于生产和探索双层嵌入 LD,另一种用于模拟单个 LD 的表面。使用第一种装置,我们证明 ADRP 分子优先定位于双层嵌入 LD 的表面上,并在存在 ADRP 的情况下研究其 3D 形状。使用第二种装置,我们进行了 FRAP 实验,以测量模型 LD 表面上磷脂的扩散作为 ADRP 浓度的函数。尽管蛋白质存在于 LD 表面上对磷脂和蛋白质的流动性影响很小,但 ADRP 似乎对嵌入双层中的 LD 的 3D 结构有显著影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f49/9916705/f864fd15a2da/ijms-24-02072-g001.jpg

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