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线粒体 ROS 在衰老大脑中的作用。

The role of mitochondrial ROS in the aging brain.

机构信息

Institute for Cell and Molecular Biosciences, Newcastle University Institute for Ageing, Newcastle University, Newcastle upon Tyne, UK.

出版信息

FEBS Lett. 2018 Mar;592(5):743-758. doi: 10.1002/1873-3468.12902. Epub 2017 Nov 15.

Abstract

The brain is the most complex human organ, consuming more energy than any other tissue in proportion to its size. It relies heavily on mitochondria to produce energy and is made up of mitotic and postmitotic cells that need to closely coordinate their metabolism to maintain essential bodily functions. During aging, damaged mitochondria that produce less ATP and more reactive oxygen species (ROS) accumulate. The current consensus is that ROS cause oxidative stress, damaging mitochondria and resulting in an energetic crisis that triggers neurodegenerative diseases and accelerates aging. However, in model organisms, increasing mitochondrial ROS (mtROS) in the brain extends lifespan, suggesting that ROS may participate in signaling that protects the brain. Here, we summarize the mechanisms by which mtROS are produced at the molecular level, how different brain cells and regions produce different amounts of mtROS, and how mtROS levels change during aging. Finally, we critically discuss the possible roles of ROS in aging as signaling molecules and damaging agents, addressing whether age-associated increases in mtROS are a cause or a consequence of aging.

摘要

大脑是人体最复杂的器官,其消耗的能量比任何其他组织都多,与体积相比更是如此。它严重依赖于线粒体来产生能量,由有丝分裂和有丝分裂后细胞组成,这些细胞需要密切协调其代谢以维持基本的身体功能。随着衰老的发生,产生较少 ATP 和更多活性氧(ROS)的受损线粒体积累。目前的共识是,ROS 会导致氧化应激,破坏线粒体并导致能量危机,从而引发神经退行性疾病并加速衰老。然而,在模式生物中,大脑中线粒体 ROS(mtROS)的增加会延长寿命,这表明 ROS 可能参与了保护大脑的信号传递。在这里,我们总结了 mtROS 在分子水平上产生的机制,不同的脑细胞和区域产生不同数量的 mtROS 的方式,以及 mtROS 水平在衰老过程中的变化。最后,我们批判性地讨论了 ROS 作为信号分子和损伤剂在衰老中的可能作用,解决了与年龄相关的 mtROS 增加是衰老的原因还是结果的问题。

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