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Beclin 2 functions in autophagy, degradation of G protein-coupled receptors, and metabolism

机译:Beclin 2在自噬,G蛋白偶联受体的降解和代谢中起作用

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摘要

The molecular mechanism of autophagy and its relationship to other lysosomal degradation pathways remain incompletely understood. Here, we identified a previously uncharacterized mammalian-specific protein, Beclin 2, which, like Beclin 1, functions in autophagy and interacts with class III PI3K complex components and Bcl-2. However, Beclin 2, but not Beclin 1, functions in an additional lysosomal degradation pathway. Beclin 2 is required for ligand-induced endolysosomal degradation of several G protein-coupled receptors (GPCRs) through its interaction with GASP1. Beclin 2 homozygous knockout mice have decreased embryonic viability, and heterozygous knockout mice have defective autophagy, increased levels of brain cannabinoid 1 receptor, elevated food intake, and obesity and insulin resistance. Our findings identify Beclin 2 as a converging regulator of autophagy and GPCR turnover and highlight the functional and mechanistic diversity of Beclin family members in autophagy, endolysosomal trafficking, and metabolism.
机译:自噬的分子机制及其与其他溶酶体降解途径的关系仍不完全清楚。在这里,我们确定了以前未表征的哺乳动物特异性蛋白Beclin 2,与Beclin 1一样,它在自噬中起作用并与III类PI3K复杂成分和Bcl-2相互作用。但是,Beclin 2,而不是Beclin 1,在另外的溶酶体降解途径中起作用。 Beclin 2是配体诱导的几种G蛋白偶联受体(GPCR)通过其与GASP1相互作用而诱导的溶酶体降解所必需的。 Beclin 2纯合基因敲除小鼠的胚胎活力降低,而杂合基因剔除小鼠的自噬缺陷,脑大麻素1受体水平升高,食物摄入增加以及肥胖和胰岛素抵抗。我们的发现确定Beclin 2是自噬和GPCR转换的聚合调节剂,并突出了Beclin家族成员在自噬,溶酶体运输和代谢中的功能和机制多样性。

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