Hempelmann Pia, Lolicato Fabio, Graziadei Andrea, Brown Ryan D R, Spiegel Sarah, Rappsilber Juri, Nickel Walter, Höglinger Doris, Jamecna Denisa
Heidelberg University Biochemistry Center, Im Neuenheimer Feld 328, 69120 Heidelberg.
Department of Physics, University of Helsinki, FI-00014 Helsinki, Finland.
bioRxiv. 2023 Sep 18:2023.09.18.557036. doi: 10.1101/2023.09.18.557036.
Sphingolipids are important structural components of membranes. Additionally, simple sphingolipids such as sphingosine are highly bioactive and participate in complex subcellular signaling. Sphingolipid deregulation is associated with many severe diseases including diabetes, Parkinson's and cancer. Here, we focus on how sphingosine, generated from sphingolipid catabolism in late endosomes/lysosomes, is reintegrated into the biosynthetic machinery at the endoplasmic reticulum (ER). We characterized the sterol transporter STARD3 as a sphingosine transporter acting at lysosome-ER contact sites. Experiments featuring crosslinkable sphingosine probes, supported by unbiased molecular dynamics simulations, exposed how sphingosine binds to the lipid-binding domain of STARD3. Following the metabolic fate of pre-localized lysosomal sphingosine showed the importance of STARD3 and its actions at contact sites for the integration of sphingosine into ceramide in a cellular context. Our findings provide the first example of interorganellar sphingosine transfer and pave the way for a better understanding of sphingolipid - sterol co-regulation.
鞘脂是细胞膜的重要结构成分。此外,像鞘氨醇这样的简单鞘脂具有高度生物活性,并参与复杂的亚细胞信号传导。鞘脂失调与许多严重疾病相关,包括糖尿病、帕金森病和癌症。在此,我们关注在内体/溶酶体晚期由鞘脂分解代谢产生的鞘氨醇如何在内质网(ER)重新整合到生物合成机制中。我们将固醇转运蛋白STARD3鉴定为一种在溶酶体 - 内质网接触位点起作用的鞘氨醇转运蛋白。由无偏见分子动力学模拟支持的、以可交联鞘氨醇探针为特色的实验,揭示了鞘氨醇如何与STARD3的脂质结合结构域结合。追踪预先定位的溶酶体鞘氨醇的代谢命运,显示了STARD3及其在接触位点的作用对于在细胞环境中将鞘氨醇整合到神经酰胺中的重要性。我们的发现提供了细胞器间鞘氨醇转移的首个实例,并为更好地理解鞘脂 - 固醇共同调节铺平了道路。