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首页> 外文期刊>The journals of gerontology.Series A. Biological sciences and medical sciences >Many faces of mitochondrial uncoupling during age: Damage or defense?
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Many faces of mitochondrial uncoupling during age: Damage or defense?

机译:线粒体在解耦时的许多面孔:损害还是防御?

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摘要

An increased mitochondrial proton leak occurs in aging, but the origin of such modification remains unclear. This study defined the cause of mitochondrial uncoupling in mitotic (liver) and postmitotic (heart) rat tissues during aging and its effects on energy homeostasis and free radical production. Proton leak in old heart mitochondria was dependent on uncoupling proteins' upregulation, whereas it was caused by alterations in the mitochondrial membrane composition in old liver. ATP homeostasis was impaired in both tissues from old animals and was associated to disrupted F0F1-ATPase activity. H 2O2 production rate and 4-hydroxy-2-nonenalprotein adducts were higher in old liver mitochondria compared with young liver mitochondria, but they were similar in heart mitochondria from both groups. Moreover, key mitochondrial biogenesis regulators were upregulated in old liver but downregulated in old heart. In conclusion, uncoupling proteins mediate proton leak and avoid oxidative damage in heart, acting as a protective mechanism. This does not occur in liver, where ATP depletion and oxidative stress may stimulate mitochondrial biogenesis and eliminate damaged cells.
机译:线粒体质子泄漏在老化中增加,但这种修饰的起源尚不清楚。这项研究确定了衰老过程中有丝分裂(肝脏)和有丝分裂后(心脏)大鼠组织中线粒体解偶联的原因及其对能量稳态和自由基产生的影响。老心脏线粒体中的质子泄漏取决于解偶联蛋白的上调,而这是由老肝脏中线粒体膜组成的改变引起的。老年动物的两个组织中的ATP稳态均受损,并且与F0F1-ATPase活性受损有关。老肝线粒体中的H 2O2产生率和4-羟基-2-壬烯蛋白加合物高于年轻肝线粒体,但两组的心脏线粒体中H 2 O2生成率和4-羟基-2-壬烯蛋白加合物较高。此外,关键的线粒体生物发生调节因子在旧肝脏中被上调,而在旧心脏中被下调。总之,解偶联蛋白可介导质子泄漏并避免心脏的氧化损伤,这是一种保护机制。这在肝脏中不会发生,肝脏中的ATP消耗和氧化应激可能会刺激线粒体的生物发生并消除受损的细胞。

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