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线粒体超氧化物歧化酶减少表现出类似于自然衰老的死亡特征。

Reduced mitochondrial SOD displays mortality characteristics reminiscent of natural aging.

作者信息

Paul Anirban, Belton Amy, Nag Sanjay, Martin Ian, Grotewiel Michael S, Duttaroy Atanu

机构信息

Biology Department, Howard University, NW, Washington, DC 20059, USA.

出版信息

Mech Ageing Dev. 2007 Nov-Dec;128(11-12):706-16. doi: 10.1016/j.mad.2007.10.013. Epub 2007 Nov 4.

Abstract

Manganese superoxide dismutase (MnSOD or SOD2) is a key mitochondrial enzymatic antioxidant. Arguably the most striking phenotype associated with complete loss of SOD2 in flies and mice is shortened life span. To further explore the role of SOD2 in protecting animals from aging and age-associated pathology, we generated a unique collection of Drosophila mutants that progressively reduce SOD2 expression and function. Mitochondrial aconitase activity was substantially reduced in the Sod2 mutants, suggesting that SOD2 normally ensures the functional capacity of mitochondria. Flies with severe reductions in SOD2 expression exhibited accelerated senescence of olfactory behavior as well as precocious neurodegeneration and DNA strand breakage in neurons. Furthermore, life span was progressively shortened and age-dependent mortality was increased in conjunction with reduced SOD2 expression, while initial mortality and developmental viability were unaffected. Interestingly, life span and age-dependent mortality varied exponentially with SOD2 activity, indicating that there might normally be a surplus of this enzyme for protecting animals from premature death. Our data support a model in which disruption of the protective effects of SOD2 on mitochondria manifests as profound changes in behavioral and demographic aging as well as exacerbated age-related pathology in the nervous system.

摘要

锰超氧化物歧化酶(MnSOD或SOD2)是一种关键的线粒体酶抗氧化剂。可以说,果蝇和小鼠中与SOD2完全缺失相关的最显著表型是寿命缩短。为了进一步探究SOD2在保护动物免受衰老及与年龄相关病理影响方面的作用,我们构建了一组独特的果蝇突变体,其SOD2的表达和功能会逐渐降低。Sod2突变体中线粒体乌头酸酶活性显著降低,这表明SOD2通常能确保线粒体的功能能力。SOD2表达严重降低的果蝇表现出嗅觉行为加速衰老,以及神经元早熟性神经退行性变和DNA链断裂。此外,随着SOD2表达降低,果蝇寿命逐渐缩短,年龄依赖性死亡率增加,而初始死亡率和发育活力不受影响。有趣的是,寿命和年龄依赖性死亡率随SOD2活性呈指数变化,这表明正常情况下可能存在过量的这种酶来保护动物免于过早死亡。我们的数据支持这样一种模型,即SOD2对线粒体的保护作用受到破坏表现为行为和人口统计学衰老的深刻变化以及神经系统中与年龄相关病理的加剧。

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