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早期大脑衰老:线粒体大小的异质性与大脑皮质和海马体中与复合物 I 相关的呼吸下降有关。

Initial brain aging: heterogeneity of mitochondrial size is associated with decline in complex I-linked respiration in cortex and hippocampus.

机构信息

Center for Neuroscience, University of Copenhagen, Copenhagen, Denmark; Department of Clinical Neurophysiology, Rigshospitalet, Glostrup, Denmark.

Xlab, Department of Biomedical Science, University of Copenhagen, Copenhagen, Denmark.

出版信息

Neurobiol Aging. 2018 Jan;61:215-224. doi: 10.1016/j.neurobiolaging.2017.08.004. Epub 2017 Aug 12.

Abstract

Brain aging is accompanied by declining mitochondrial respiration. We hypothesized that mitochondrial morphology and dynamics would reflect this decline. Using hippocampus and frontal cortex of a segmental progeroid mouse model lacking Cockayne syndrome protein B (CSB) and C57Bl/6 (WT) controls and comparing young (2-5 months) to middle-aged mice (13-14 months), we found that complex I-linked state 3 respiration (CI) was reduced at middle age in CSB hippocampus, but not in CSB cortex or WT brain. In hippocampus of both genotypes, mitochondrial size heterogeneity increased with age. Notably, an inverse correlation between heterogeneity and CI was found in both genotypes, indicating that heterogeneity reflects mitochondrial dysfunction. The ratio between fission and fusion gene expression reflected age-related alterations in mitochondrial morphology but not heterogeneity. Mitochondrial DNA content was lower, and hypoxia-induced factor 1α mRNA was greater at both ages in CSB compared to WT brain. Our findings show that decreased CI and increased mitochondrial size heterogeneity are highly associated and point to declining mitochondrial quality control as an initial event in brain aging.

摘要

大脑衰老伴随着线粒体呼吸功能的下降。我们假设线粒体的形态和动力学将反映这种下降。我们使用缺乏 Cockayne 综合征蛋白 B (CSB) 的分段早衰小鼠模型的海马体和前额皮质以及 C57Bl/6 (WT) 对照,并比较了年轻 (2-5 个月) 和中年 (13-14 个月) 小鼠,发现 CSB 海马体中的复合物 I 连接的状态 3 呼吸 (CI) 在中年时降低,但 CSB 皮质或 WT 大脑中没有降低。在两种基因型的海马体中,线粒体大小异质性随年龄增长而增加。值得注意的是,在两种基因型中均发现异质性与 CI 呈负相关,表明异质性反映了线粒体功能障碍。裂变和融合基因表达的比例反映了与年龄相关的线粒体形态变化,但不能反映异质性。CSB 与 WT 大脑相比,线粒体 DNA 含量较低,缺氧诱导因子 1α mRNA 含量在两个年龄阶段均较高。我们的研究结果表明,CI 降低和线粒体大小异质性增加高度相关,并表明线粒体质量控制的下降是大脑衰老的初始事件。

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