Minerva Foundation Institute for Medical Research, Tukholmankatu 8, 00290 Helsinki, Finland.
Molecular and Integrative Biosciences Research Programme, University of Helsinki, Viikinkaari 1, PO BOX 65, 00014 University of Helsinki, Finland; Helsinki University Lipidomics Unit (HiLIPID), Helsinki Institute of Life Science (HiLIFE) and Biocenter Finland, University of Helsinki, Viikinkaari 1, PO BOX 65, 00014 University of Helsinki, Finland.
J Steroid Biochem Mol Biol. 2023 Sep;232:106349. doi: 10.1016/j.jsbmb.2023.106349. Epub 2023 Jun 13.
Membrane contact sites (MCS) make up a crucial route of inter-organelle non-vesicular transport within the cell. Multiple proteins are involved in this process, which includes the ER-resident proteins vesicle associated membrane protein associated protein A and -B (VAPA/B) that form MCS between the ER and other membrane compartments. Currently most functional data on VAP depleted phenotypes have shown alterations in lipid homeostasis, induction of ER stress, dysfunction of UPR and autophagy, as well as neurodegeneration. Literature on concurrent silencing of VAPA/B is still sparse; therefore, we investigated how it affects the macromolecule pools of primary endothelial cells. Our transcriptomics results showed significant upregulation in genes related to inflammation, ER and Golgi dysfunction, ER stress, cell adhesion, as well as Coat Protein Complex-I and -II (COP-I, COP-II) vesicle transport. Genes related to cellular division were downregulated, as well as key genes of lipid and sterol biosynthesis. Lipidomics analyses revealed reductions in cholesteryl esters, very long chain highly unsaturated and saturated lipids, whereas increases in free cholesterol and relatively short chain unsaturated lipids were evident. Furthermore, the knockdown resulted in an inhibition of angiogenesis in vitro. We speculate that ER MCS depletion has led to multifaceted outcomes, which include elevated ER free cholesterol content and ER stress, alterations in lipid metabolism, ER-Golgi function and vesicle transport, which have led to a reduction in angiogenesis. The silencing also induced an inflammatory response, consistent with upregulation of markers of early atherogenesis. To conclude, ER MCS mediated by VAPA/B play a crucial role in maintaining cholesterol traffic and sustain normal endothelial functions.
膜接触位点 (MCS) 构成了细胞内细胞器间非囊泡运输的重要途径。这一过程涉及多种蛋白质,其中包括驻留在内质网 (ER) 的囊泡相关膜蛋白相关蛋白 A 和 -B (VAPA/B),它们在内质网和其他膜隔室之间形成 MCS。目前,关于 VAP 耗尽表型的大多数功能数据表明,脂质稳态、内质网应激、未折叠蛋白反应和自噬功能障碍以及神经退行性变发生改变。关于 VAPA/B 同时沉默的文献仍然很少;因此,我们研究了它如何影响原代内皮细胞的大分子池。我们的转录组学结果显示,与炎症、内质网和高尔基体功能障碍、内质网应激、细胞黏附以及衣壳蛋白复合物-I 和 -II (COP-I、COP-II) 囊泡运输相关的基因显著上调。与细胞分裂相关的基因下调,以及脂质和固醇生物合成的关键基因下调。脂质组学分析显示胆固醇酯、超长链高度不饱和和饱和脂质减少,而游离胆固醇和相对短链不饱和脂质增加。此外,敲低导致体外血管生成抑制。我们推测 ER MCS 的耗竭导致了多方面的结果,包括内质网游离胆固醇含量和内质网应激增加、脂质代谢改变、内质网-高尔基体功能和囊泡运输改变,导致血管生成减少。沉默还诱导了炎症反应,与早期动脉粥样硬化形成标志物的上调一致。总之,VAPA/B 介导的 ER MCS 在维持胆固醇运输和维持正常内皮功能方面发挥着关键作用。