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Homeostatic levels of p62 control cytoplasmic inclusion body formation in autophagy-deficient mice

机译:自噬缺陷小鼠中p62的稳态水平控制细胞质包涵体的形成

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Inactivation of constitutive autophagy results in formation of cytoplasmic protein inclusions and leads to liver injury and neurodegeneration, but the details of abnormalities related to impaired autophagy are largely unknown. Here we used mouse genetic analyses to define the roles of autophagy in the aforementioned events. Were-port that the ubiquitin-and LC3-binding protein "p62'' regulates the formation of protein aggregates and is removed by autophagy. Thus, genetic ablation of p62 suppressed the appearance of ubiquitin-positive protein aggregates in hepatocytes and neurons, indicating that p62 plays an important role in inclusion body formation. Moreover, loss of p62 markedly attenuated liver injury caused by autophagy deficiency, whereas it had little effect on neuronal degeneration. Our findings highlight the unexpected role of homeostatic level of p62, which is regulated by autophagy, in controlling intracellular inclusion body formation, and indicate that the pathologic process associated with autophagic deficiency is cell-type specific.
机译:组成型自噬的失活导致细胞质蛋白内含物的形成,并导致肝损伤和神经退行性变,但是与自噬受损有关的异常的细节在很大程度上是未知的。在这里,我们使用小鼠遗传分析来定义自噬在上述事件中的作用。据报道,泛素和LC3结合蛋白“ p62”调节蛋白质聚集体的形成并通过自噬去除,因此,p62的基因消融抑制了肝细胞和神经元中泛素阳性蛋白质聚集体的出现,表明p62在包涵体形成中起着重要作用,此外,p62的丧失可明显减轻自噬不足引起的肝损伤,而对神经元变性的影响很小,我们的发现突显了p62稳态水平的意想不到的作用,该水平受自噬调节在控制细胞内包涵体形成中的作用,并表明与自噬缺乏相关的病理过程是细胞类型特异性的。

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