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Autophagic substrate clearance requires activity of the syntaxin-5 SNARE complex.

机译:自噬底物清除需要syntaxin-5 SNARE复合物的活性。

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Autophagy is a lysosome-dependent cellular catabolic mechanism that mediates the turnover of intracellular organelles and long-lived proteins. Reduced autophagic activity has been shown to lead to the accumulation of misfolded proteins in neurons and might be involved in chronic neurodegenerative diseases. Here, we uncover an essential role for the syntaxin-5 SNARE complex in autophagy. Using genetic knockdown, we show that the syntaxin-5 SNARE complex regulates the later stages of autophagy after the initial formation of autophagosomes. This SNARE complex acts on autophagy by regulating ER-to-Golgi transport through the secretory pathway, which is essential for the activity of lysosomal proteases such as cathepsins. Depletion of syntaxin-5 complex components results in the accumulation of autophagosomes as a result of lysosomal dysfunction, leading to decreased degradation of autophagic substrates. Our findings provide a novel link between a fundamental process such as intracellular trafficking and human diseases that might be affected by defective biogenesis and/or homeostasis of the autophagosome-lysosome degradation system.
机译:自噬是一种依赖溶酶体的细胞分解代谢机制,可介导细胞内细胞器和长寿蛋白的更新。已经表明,自噬活性降低导致神经元中错误折叠的蛋白质积累,并可能参与慢性神经退行性疾病。在这里,我们发现了在自噬中syntaxin-5 SNARE复合体的重要作用。使用基因敲低,我们表明syntaxin-5 SNARE复合体调节自噬体的初始形成后自噬的后期阶段。这种SNARE复合物通过调节通过分泌途径的ER到高尔基体的运输而作用于自噬,这对于溶酶体蛋白酶(例如组织蛋白酶)的活性至关重要。溶酶体功能障碍的结果是,syntaxin-5复杂成分的耗尽导致自噬体的积累,从而导致自噬底物的降解降低。我们的发现为细胞内运输等基本过程与可能受自噬体-溶酶体降解系统的缺陷生物发生和/或体内平衡影响的人类疾病之间提供了新颖的联系。

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