Cell and Chemical Biology, Oncode Institute, Leiden University Medical Center, Leiden, Netherlands.
Centre for Proteomics and Metabolomics, Leiden University Medical Center, Leiden, Netherlands.
Elife. 2024 Aug 6;12:RP91345. doi: 10.7554/eLife.91345.
Numerous lipids are heterogeneously distributed among organelles. Most lipid trafficking between organelles is achieved by a group of lipid transfer proteins (LTPs) that carry lipids using their hydrophobic cavities. The human genome encodes many intracellular LTPs responsible for lipid trafficking and the function of many LTPs in defining cellular lipid levels and distributions is unclear. Here, we created a gene knockout library targeting 90 intracellular LTPs and performed whole-cell lipidomics analysis. This analysis confirmed known lipid disturbances and identified new ones caused by the loss of LTPs. Among these, we found major sphingolipid imbalances in ORP9 and ORP11 knockout cells, two proteins of previously unknown function in sphingolipid metabolism. ORP9 and ORP11 form a heterodimer to localize at the ER--Golgi membrane contact sites, where the dimer exchanges phosphatidylserine (PS) for phosphatidylinositol-4-phosphate (PI(4)P) between the two organelles. Consequently, loss of either protein causes phospholipid imbalances in the Golgi apparatus that result in lowered sphingomyelin synthesis at this organelle. Overall, our LTP knockout library toolbox identifies various proteins in control of cellular lipid levels, including the ORP9-ORP11 heterodimer, which exchanges PS and PI(4)P at the ER-Golgi membrane contact site as a critical step in sphingomyelin synthesis in the Golgi apparatus.
许多脂质在细胞器中不均匀分布。大多数细胞器之间的脂质运输是通过一组脂质转移蛋白(LTPs)实现的,这些蛋白利用其疏水性腔携带脂质。人类基因组编码了许多负责脂质运输的细胞内 LTPs,许多 LTPs 在确定细胞内脂质水平和分布方面的功能尚不清楚。在这里,我们创建了一个针对 90 种细胞内 LTPs 的基因敲除文库,并进行了全细胞脂质组学分析。该分析证实了已知的脂质紊乱,并确定了由 LTPs 缺失引起的新紊乱。其中,我们发现 ORP9 和 ORP11 敲除细胞中的主要鞘脂失衡,这两种蛋白质在鞘脂代谢中以前未知的功能。ORP9 和 ORP11 形成异二聚体,定位在 ER-Golgi 膜接触部位,在该部位二聚体在两个细胞器之间交换磷脂酰丝氨酸(PS)和磷脂酰肌醇-4-磷酸(PI(4)P)。因此,任一蛋白质的缺失都会导致高尔基体中磷脂失衡,从而导致该细胞器中鞘磷脂合成减少。总的来说,我们的 LTP 敲除文库工具确定了各种控制细胞内脂质水平的蛋白质,包括 ORP9-ORP11 异二聚体,它作为高尔基体中鞘磷脂合成的关键步骤,在 ER-Golgi 膜接触部位交换 PS 和 PI(4)P。