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Post-translational modifications of Beclin 1 provide multiple strategies for autophagy regulation

机译:BECLIN 1的翻译后修改为自噬监管提供了多种策略

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摘要

Autophagy is a conserved intracellular degradation pathway essential for protein homeostasis, survival and development. Defects in autophagic pathways have been connected to a variety of human diseases, including cancer and neurodegeneration. In the process of macroautophagy, cytoplasmic cargo is enclosed in a double-membrane structure and fused to the lysosome to allow for digestion and recycling of material. Autophagosome formation is primed by the ULK complex, which enables the downstream production of PI(3)P, a key lipid signalling molecule, on the phagophore membrane. The PI(3)P is generated by the PI3 kinase (PI3K) complex, consisting of the core components VPS34, VPS15 and Beclin 1. Beclin 1 is a central player in autophagy and constitutes a molecular platform for the regulation of autophagosome formation and maturation. Post-translational modifications of Beclin 1 affect its stability, interactions and ability to regulate PI3K activity, providing the cell with a plethora of strategies to fine-tune the levels of autophagy. Being such an important regulator, Beclin 1 is a potential target for therapeutic intervention and interfering with the post-translational regulation of Beclin 1 could be one way of manipulating the levels of autophagy. In this review, we provide an overview of the known post-translational modifications of Beclin 1 that govern its role in autophagy and how these modifications are maintained by input from several upstream signalling pathways.
机译:自噬是一种保守的细胞内降解途径,对于蛋白质稳态,生存和发育是必不可少的。自噬途径中的缺陷已与各种人类疾病有关,包括癌症和神经变性。在宏观营养的过程中,细胞质货物封闭在双膜结构中并融合到溶解物中以允许物质的消化和再循环。自噬体形成由ULK复合物灌注,其在噬菌体膜上能够在PI(3)P,键脂质信号分子的下游产生。 PI(3)P由PI3激酶(PI3K)复合物产生,由核心组分VPS34,VPS15和BECLIN1组成。BECLIN1是自噬中的中央球员,并构成用于调节自噬体形成和成熟的分子平台。 BECLIN 1的翻译后修饰影响其稳定性,相互作用和调节PI3K活性的能力,为细胞提供血清策略,以微调自噬水平。作为这样一个重要的调节剂,BECLIN 1是治疗干预和干扰BECLIN 1的翻译后调节的潜在目标,这可能是操纵自噬的水平的一种方式。在本次审查中,我们概述了BECLIN 1的已知翻译后修改,该翻译后修改其在自噬中的作用以及如何通过从几个上游信令路径的输入维护这些修改。

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  • 来源
    《Cell death and differentiation》 |2019年第4期|共13页
  • 作者单位

    Wellcome Trust Res Labs Cambridge Inst Med Res Dept Med Genet MRC Bldg Cambridge Biomed Campus;

    Wellcome Trust Res Labs Cambridge Inst Med Res Dept Med Genet MRC Bldg Cambridge Biomed Campus;

    Wellcome Trust Res Labs Cambridge Inst Med Res Dept Med Genet MRC Bldg Cambridge Biomed Campus;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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