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Research paper Mitochondrial contribution to lipofuscin formation

机译:研究论文线粒体对脂褐素形成的贡献

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Mitochondria have been in the focus of oxidative stress and aging research for decades due to their permanent production of ROS during the oxidative phosphorylation. The hypothesis exists that mitochondria are involved in the formation of lipofuscin, an autofluorescent protein aggregate that accumulates progressively over time in lysosomes of post-mitotic and senescent cells. To investigate the influence and involvement of mitochondria in lipofuscinogenesis, we analyzed lipofuscin amounts as well as the mitochondrial function in young and senescent cells. In addition we used an aging model and Lon protease deficient HeLa cells to investigate the influence of mitochondrial degradation processes on lipofuscin formation.We were able to show that mitophagy is impaired in senescent cells resulting in an increased mitochondrial mass and superoxide formation. In addition, the inhibition of mitochondrial fission leads to increased lipofuscin formation.Moreover, we observed that Lon protease downregulation is linked to a higher lipofuscinogenesis whereas the application of the mitochondrial-targeted antioxidant mitoTEMPO is able to prevent the accumulation of this protein aggregate.
机译:由于线粒体在氧化磷酸化过程中永久产生ROS,因此数十年来一直是氧化应激和老化研究的重点。假设线粒体参与脂褐素的形成,脂褐素是一种自体荧光蛋白聚集体,随着时间的推移逐渐积累在有丝分裂后和衰老细胞的溶酶体中。为了研究线粒体在脂褐素生成中的影响和参与,我们分析了脂褐素的含量以及年轻和衰老细胞中的线粒体功能。此外,我们使用衰老模型和缺乏Lon蛋白酶的HeLa细胞来研究线粒体降解过程对脂褐素形成的影响。我们能够证明衰老细胞的线粒体功能受损,导致线粒体质量增加和超氧化物形成。此外,线粒体裂变的抑制导致脂褐素的形成增加。此外,我们观察到Lon蛋白酶的下调与较高的脂褐素生成有关,而以线粒体为靶标的抗氧化剂mitoTEMPO的应用能够阻止这种蛋白质聚集的积累。

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