Chen Shuliang, Roberts Melissa A, Chen Chun-Yuan, Markmiller Sebastian, Wei Hong-Guang, Yeo Gene W, Granneman James G, Olzmann James A, Ferro-Novick Susan
Department of Cellular and Molecular Medicine, University of California San Diego, La Jolla, CA, USA.
Department of Molecular and Cell Biology, University of California, Berkeley, CA, USA.
Contact (Thousand Oaks). 2022 Sep 13;5:25152564221125613. doi: 10.1177/25152564221125613. eCollection 2022 Jan-Dec.
Lipid transfer proteins mediate the exchange of lipids between closely apposed membranes at organelle contact sites and play key roles in lipid metabolism, membrane homeostasis, and cellular signaling. A recently discovered novel family of lipid transfer proteins, which includes the VPS13 proteins (VPS13A-D), adopt a rod-like bridge conformation with an extended hydrophobic groove that enables the bulk transfer of membrane lipids for membrane growth. Loss of function mutations in VPS13A and VPS13C cause chorea acanthocytosis and Parkinson's disease, respectively. VPS13A and VPS13C localize to multiple organelle contact sites, including endoplasmic reticulum (ER) - lipid droplet (LD) contact sites, but the functional roles of these proteins in LD regulation remains mostly unexplored. Here we employ CRISPR-Cas9 genome editing to generate VPS13A and VPS13C knockout cell lines in U-2 OS cells via deletion of exon 2 and introduction of an early frameshift. Analysis of LD content in these cell lines revealed that loss of either VPS13A or VPS13C results in reduced LD abundance under oleate-stimulated conditions. These data implicate two lipid transfer proteins, VPS13A and VPS13C, in LD regulation.
脂质转移蛋白介导细胞器接触位点处紧密相邻膜之间的脂质交换,并在脂质代谢、膜稳态和细胞信号传导中发挥关键作用。最近发现的一类新的脂质转移蛋白,包括VPS13蛋白(VPS13A - D),采用具有延伸疏水凹槽的棒状桥构象,能够大量转移膜脂质以促进膜生长。VPS13A和VPS13C的功能丧失突变分别导致舞蹈病性棘红细胞增多症和帕金森病。VPS13A和VPS13C定位于多个细胞器接触位点,包括内质网(ER)-脂滴(LD)接触位点,但这些蛋白在脂滴调节中的功能作用仍大多未被探索。在这里,我们采用CRISPR - Cas9基因组编辑技术,通过缺失外显子2和引入早期移码,在U - 2 OS细胞中生成VPS13A和VPS13C基因敲除细胞系。对这些细胞系中脂滴含量的分析表明,在油酸刺激条件下,VPS13A或VPS13C的缺失都会导致脂滴丰度降低。这些数据表明两种脂质转移蛋白VPS13A和VPS13C参与脂滴调节。