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首页> 外文期刊>Scientific reports. >Acute and chronic mitochondrial respiratory chain deficiency differentially regulate lysosomal biogenesis
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Acute and chronic mitochondrial respiratory chain deficiency differentially regulate lysosomal biogenesis

机译:急性和慢性线粒体呼吸链缺乏差异调节溶酶体生物发生

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Mitochondria are key cellular signaling platforms, affecting fundamental processes such as cell proliferation, differentiation and death. However, it remains unclear how mitochondrial signaling affects other organelles, particularly lysosomes. Here, we demonstrate that mitochondrial respiratory chain (RC) impairments elicit a stress signaling pathway that regulates lysosomal biogenesis via the microphtalmia transcription factor family. Interestingly, the effect of mitochondrial stress over lysosomal biogenesis depends on the timeframe of the stress elicited: while RC inhibition with rotenone or uncoupling with CCCP initially triggers lysosomal biogenesis, the effect peaks after few hours and returns to baseline. Long-term RC inhibition by long-term treatment with rotenone, or patient mutations in fibroblasts and in a mouse model result in repression of lysosomal biogenesis. The induction of lysosomal biogenesis by short-term mitochondrial stress is dependent on TFEB and MITF, requires AMPK signaling and is independent of calcineurin signaling. These results reveal an integrated view of how mitochondrial signaling affects lysosomes, which is essential to fully comprehend the consequences of mitochondrial malfunction, particularly in the context of mitochondrial diseases.
机译:线粒体是关键的细胞信号平台,影响细胞增殖,分化和死亡等基本过程。然而,仍然尚不清楚线粒体信号如何影响其他细胞器,特别是溶酶体。在这里,我们证明线粒体呼吸链(RC)损伤引发了应力信号传导途径,该途径通过微孔转录因子家族调节溶酶体生物生物。有趣的是,线粒体应激对溶酶体生物发生的影响取决于引发的应力的时间框架:而RC抑制具有旋转酮或与CCCP的解耦最初触发溶酶体生物发生,但在几小时后效果峰值并返回基线。长期RC抑制通过用旋转藤酮的长期处理,或成纤维细胞中的患者突变和小鼠模型导致抑制溶酶体生物发生。短期线粒体应力诱导溶酶体生物发生依赖于TFEB和MITF,需要AMPK信号传导并与钙磷素信号传导无关。这些结果揭示了线粒体信号如何影响溶酶体的综合图,这对于完全理解线粒体故障的后果至关重要,特别是在线粒体疾病的背景下。

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