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Lysosomal recycling of amino acids affects ER quality control

机译:氨基酸的溶酶体再循环会影响ER质量控制

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摘要

Recent work has highlighted the fact that lysosomes are a critical signaling hub of metabolic processes, providing fundamental building blocks crucial for anabolic functions. How lysosomal functions affect other cellular compartments is not fully understood. Here, we find that lysosomal recycling of the amino acids lysine and arginine is essential for proper ER quality control through the UPRsupER/sup. Specifically, loss of the lysine and arginine amino acid transporter LAAT-1 results in increased sensitivity to proteotoxic stress in the ER and decreased animal physiology. We find that these LAAT-1–dependent effects are linked to glycine metabolism and transport and that the loss of function of the glycine transporter SKAT-1 also increases sensitivity to ER stress. Direct lysine and arginine supplementation, or glycine supplementation alone, can ameliorate increased ER stress sensitivity found in laat-1 mutants. These data implicate a crucial role in recycling lysine, arginine, and glycine in communication between the lysosome and ER.
机译:最近的工作强调了溶酶体是代谢过程的关键信号传导枢纽的事实,为合成代谢功能提供了至关重要的基本构建块。溶酶体功能如何影响其他蜂窝隔室是不完全理解的。在这里,我们发现氨基酸赖氨酸和精氨酸的溶酶体再循环对于通过UPR Er 适当的ER质量控制至关重要。具体地,赖氨酸和精氨酸氨基酸转运蛋白LAAT-1的丧失导致ER和动物生理学中的蛋白毒性应力增加了敏感性。我们发现这些LAAT-1依赖性效果与甘氨酸代谢和运输有关,并且甘氨酸转运蛋白SKAT-1的功能丧失也增加了对ER应激的敏感性。单独的直接赖氨酸和精氨酸补充剂或甘氨酸补充剂可以改善Laat-1突变体中发现的ER应激敏感性增加。这些数据致命在溶酶体和ER之间的通信中循环赖氨酸,精氨酸和甘氨酸中的至关重要作用。

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