The intrinsic apoptotic pathway lies upstream of reactive species production in cortical neurons and age-related oxidative stress in the brain

IF 2.6 3区 医学 Q3 NEUROSCIENCES Molecular and Cellular Neuroscience Pub Date : 2023-09-18 DOI:10.1016/j.mcn.2023.103901
Kyndra Stovall , Mital Patel , James L. Franklin
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Abstract

A BAX- and mitochondria-dependent production of reactive oxygen species (ROS) and reactive species (reactive nitrogen species, RNS) lying downstream of these ROS occurs in apoptotic and nonapoptotic mouse sympathetic neurons and cerebellar granule cells in cell culture. These ROS have been shown to lie downstream of caspase 3 in mouse sympathetic neurons. Here we show that BAX is necessary for similar ROS production in apoptotic and nonapoptotic mouse cortical neurons in cell culture and that it also positively regulates oxidative stress in the brains of mice of different ages. Brains from mice with genetically reduced levels of mitochondrial superoxide dismutase 2 (SOD2) exhibited elevated levels of DNA strand breaks consistent with oxidative damage. Lipid peroxides were also elevated at some ages in comparison to the brains of wild type animals. BAX deletion in these mice reduced both brain DNA strand breaks and lipid peroxide levels to well below those of wild type animals. Deletion of caspase 3 greatly reduced age-augmented levels of brain oxidative stress markers including lipid peroxides, oxidized DNA, and nitrosylated proteins. These findings indicate that BAX contributes to ROS production in mouse cortical neurons, to oxidative stress their brains, and that this effect is likely mediated via caspase 3 activity.

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内在凋亡途径位于皮层神经元中反应性物种产生和大脑中与年龄相关的氧化应激的上游。
在细胞培养中,凋亡和非凋亡的小鼠交感神经元和小脑颗粒细胞中发生BAX和线粒体依赖性的活性氧(ROS)和活性氧下游的活性物质(活性氮,RNS)的产生。这些ROS已被证明位于小鼠交感神经元中caspase 3的下游。在这里,我们发现BAX对于细胞培养中凋亡和非凋亡小鼠皮层神经元中类似的ROS产生是必要的,并且它还积极调节不同年龄小鼠大脑中的氧化应激。来自线粒体超氧化物歧化酶2(SOD2)基因水平降低的小鼠的大脑表现出与氧化损伤一致的DNA链断裂水平升高。与野生型动物的大脑相比,脂质过氧化物在某些年龄段也会升高。这些小鼠的BAX缺失使大脑DNA链断裂和脂质过氧化物水平均远低于野生型动物。胱天蛋白酶3的缺失大大降低了大脑氧化应激标志物的增龄水平,包括脂质过氧化物、氧化的DNA和亚硝化蛋白。这些发现表明,BAX有助于小鼠皮层神经元产生ROS,对其大脑产生氧化应激,这种作用可能是通过胱天蛋白酶3活性介导的。
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来源期刊
CiteScore
5.60
自引率
0.00%
发文量
65
审稿时长
37 days
期刊介绍: Molecular and Cellular Neuroscience publishes original research of high significance covering all aspects of neurosciences indicated by the broadest interpretation of the journal''s title. In particular, the journal focuses on synaptic maintenance, de- and re-organization, neuron-glia communication, and de-/regenerative neurobiology. In addition, studies using animal models of disease with translational prospects and experimental approaches with backward validation of disease signatures from human patients are welcome.
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