Department of Molecular Metabolism, Harvard T.H. Chan School of Public Health, Boston, MA, USA.
Department of Cell Biology, Harvard Medical School, Boston, MA, USA.
Nat Cell Biol. 2022 Sep;24(9):1364-1377. doi: 10.1038/s41556-022-00974-0. Epub 2022 Sep 1.
Pathways localizing proteins to their sites of action are essential for eukaryotic cell organization and function. Although mechanisms of protein targeting to many organelles have been defined, how proteins, such as metabolic enzymes, target from the endoplasmic reticulum (ER) to cellular lipid droplets (LDs) is poorly understood. Here we identify two distinct pathways for ER-to-LD protein targeting: early targeting at LD formation sites during formation, and late targeting to mature LDs after their formation. Using systematic, unbiased approaches in Drosophila cells, we identified specific membrane-fusion machinery, including regulators, a tether and SNARE proteins, that are required for the late targeting pathway. Components of this fusion machinery localize to LD-ER interfaces and organize at ER exit sites. We identified multiple cargoes for early and late ER-to-LD targeting pathways. Our findings provide a model for how proteins target to LDs from the ER either during LD formation or by protein-catalysed formation of membrane bridges.
将蛋白质定位到其作用部位的途径对于真核细胞的组织和功能至关重要。尽管已经定义了许多细胞器中蛋白质靶向的机制,但对于代谢酶等蛋白质如何从内质网 (ER) 靶向到细胞脂滴 (LD) 知之甚少。在这里,我们确定了 ER 到 LD 蛋白靶向的两种不同途径:早期靶向在形成过程中 LD 形成部位,以及晚期靶向形成后的成熟 LD。我们使用果蝇细胞中的系统、无偏方法,鉴定了特定的膜融合机制,包括调节剂、系绳和 SNARE 蛋白,这些都是晚期靶向途径所必需的。该融合机制的组件定位于 LD-ER 界面,并在 ER 出口位点组织。我们鉴定了早期和晚期 ER 到 LD 靶向途径的多个货物。我们的发现为蛋白质从 ER 靶向 LD 的方式提供了一个模型,无论是在 LD 形成期间还是通过蛋白质催化形成膜桥。