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Mitochondrial protein Fus1/Tusc2 in premature aging and age-related pathologies: critical roles of calcium and energy homeostasis

机译:线粒体蛋白Fus1 / Tusc2在过早衰老和与年龄相关的病理中:钙和能量稳态的关键作用

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摘要

Decreased energy production and increased oxidative stress are considered to be major contributors to aging and aging-associated pathologies. The role of mitochondrial calcium homeostasis has also been highlighted as an important factor affecting different pathological conditions. Here, we present evidence that loss of a small mitochondrial protein Fus1 that maintains mitochondrial homeostasis results in premature aging, aging-associated pathologies, and decreased survival. We showed that Fus1KO mice develop multiple early aging signs including lordokyphosis, lack of vigor, inability to accumulate fat, reduced ability to tolerate stress, and premature death. Other prominent pathological changes included low sperm counts, compromised ability of adult stem cells to repopulate tissues, and chronic inflammation. At the molecular level, we demonstrated that mitochondria of Fus1 KO cells have low reserve respiratory capacity (the ability to produce extra energy during sudden energy demanding situations), and show significantly altered dynamics of cellular calcium response.Our recent studies on early hearing and memory loss in Fus1 KO mice combined with the new data presented here suggest that calcium and energy homeostasis controlled by Fus1 may be at the core of its aging-regulating activities. Thus, Fus1 protein and Fus1-dependent pathways and processes may represent new tools and targets for anti-aging strategies.
机译:能量产生的减少和氧化应激的增加被认为是导致衰老和衰老相关疾病的主要原因。线粒体钙稳态的作用也已被强调为影响不同病理状况的重要因素。在这里,我们提供证据表明,维持线粒体体内稳态的小线粒体蛋白Fus1的丢失会导致过早衰老,衰老相关的病理和降低的生存率。我们显示Fus1KO小鼠发展出多种早期衰老迹象,包括驼背畸形,缺乏活力,无法积累脂肪,降低了承受压力的能力以及过早死亡。其他显着的病理变化包括精子数量低,成年干细胞再生组织能力下降和慢性炎症。在分子水平上,我们证明了Fus1 KO细胞的线粒体具有较低的储备呼吸能力(在突然的能量需求情况下能够产生额外的能量),并显示细胞钙反应的动力学发生了显着变化。 Fus1 KO小鼠的失落与此处提供的新数据相结合,表明由Fus1控制的钙和能量稳态可能是其衰老调节活动的核心。因此,Fus1蛋白和Fus1依赖的途径和过程可能代表抗衰老策略的新工具和目标。

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