Department of Biology/Chemistry, Cellular Communication Laboratory, University of Osnabrück, Osnabrück, Germany.
Department of Molecular Genetics, Weizmann Institute of Science, Rehovot, Israel.
J Cell Biol. 2022 Aug 1;221(8). doi: 10.1083/jcb.202103048. Epub 2022 Jun 29.
Membrane contact sites are specialized platforms formed between most organelles that enable them to exchange metabolites and influence the dynamics of each other. The yeast vacuole is a degradative organelle equivalent to the lysosome in higher eukaryotes with important roles in ion homeostasis and metabolism. Using a high-content microscopy screen, we identified Ymr160w (Cvm1, for contact of the vacuole membrane 1) as a novel component of three different contact sites of the vacuole: with the nuclear endoplasmic reticulum, the mitochondria, and the peroxisomes. At the vacuole-mitochondria contact site, Cvm1 acts as a tether independently of previously known tethers. We show that changes in Cvm1 levels affect sphingolipid homeostasis, altering the levels of multiple sphingolipid classes and the response of sphingolipid-sensing signaling pathways. Furthermore, the contact sites formed by Cvm1 are induced upon a decrease in sphingolipid levels. Altogether, our work identifies a novel protein that forms multiple contact sites and supports a role of lysosomal contacts in sphingolipid homeostasis.
膜接触位点是大多数细胞器之间形成的专门平台,使它们能够交换代谢物并影响彼此的动态。酵母液泡是一种降解细胞器,相当于真核生物中的溶酶体,在离子平衡和代谢中具有重要作用。我们使用高内涵显微镜筛选方法,鉴定出 Ymr160w(Cvm1,即液泡膜接触蛋白 1)是液泡与核内质网、线粒体和过氧化物酶体三种不同接触位点的新型组成部分。在液泡-线粒体接触位点,Cvm1 作为一个系绳,独立于先前已知的系绳。我们表明,Cvm1 水平的变化会影响鞘脂的动态平衡,改变多种鞘脂类别的水平以及鞘脂感应信号通路的反应。此外,在鞘脂水平降低时,Cvm1 形成的接触位点会被诱导。总之,我们的工作鉴定出一种新型蛋白质,它可以形成多种接触位点,并支持溶酶体接触在鞘脂动态平衡中的作用。