Lauzier Annie, Jean Steve
médecine et des sciences de la santé, Département d'immunologie et de biologie cellulaire Université de Sherbrooke Rue Jean-Mignault Sherbrooke, Québec, 3201, Canada, J1E 4K8.
Autophagy Rep. 2022 Mar 22;1(1):42-46. doi: 10.1080/27694127.2022.2047267. eCollection 2022.
Macroautophagy/autophagy is coupled to a myriad of intracellular processes, among which vesicular trafficking is an important contributor of membranes and proteins required at various stages, from autophagosome formation to degradation. Hence, understanding how membrane trafficking is coupled to autophagy induction and how cells rewire trafficking upon high autophagic needs is instrumental to our understanding of autophagy. In our recent manuscript, we tested a known class of endosomal sorting regulators, the sorting nexin family, for their involvement in autophagy in . We identified (snazarus) as an important regulator of autophagy in as well as in mammalian cells, by demonstrating a role for the human ortholog in HeLa cells. Using knockout rescue experiments, we observed that loss affects many cellular processes, namely VAMP8 endocytosis and lipid handling. Mutational studies identified separate protein domains involved in these processes. Given the role of this sorting nexin family in lipid droplet regulation, our work expands their requirement to autophagy.
巨自噬/自噬与众多细胞内过程相关联,其中囊泡运输是从自噬体形成到降解的各个阶段所需膜和蛋白质的重要贡献者。因此,了解膜运输如何与自噬诱导相关联,以及细胞在高自噬需求时如何重新调整运输,对于我们理解自噬至关重要。在我们最近的手稿中,我们测试了一类已知的内体分选调节因子——分选连接蛋白家族,以确定它们在[具体生物或细胞类型]中对自噬的参与情况。我们通过证明人同源物在HeLa细胞中的作用,确定了[具体名称](snazarus)是[具体生物或细胞类型]以及哺乳动物细胞中自噬的重要调节因子。通过基因敲除挽救实验,我们观察到[具体名称]缺失会影响许多细胞过程,即VAMP8内吞作用和脂质处理。突变研究确定了参与这些过程的不同蛋白质结构域。鉴于该分选连接蛋白家族在脂滴调节中的作用,我们的工作扩展了它们在自噬中的需求。