大鼠大脑线粒体复合体I的超分子结构被阿尔茨海默病样大脑淀粉样变性所改变

IF 4.2 3区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Gisela V. Novack, Pablo Galeano, Lucas A. Defelipe, Lorenzo Campanelli, Karen S. Campuzano, Cecilia Rotondaro, Eduardo M. Castaño, Sonia Do Carmo, A. Claudio Cuello, María M. García-Alai, Laura Morelli
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引用次数: 0

摘要

线粒体呼吸复合物被组织成超复合物(SC)来调节电子流和减轻氧化应激。大脑SC组织的改变可能影响能量消耗、氧化应激和神经元存活。在本报告中,我们研究了12月龄McGill-R-Thy1-APP转基因大鼠海马中线粒体复合物I (CI)的数量、活性和组织。通过BN-PAGE,我们发现SC的组织在基因型之间没有差异,但与野生型(WT)大鼠相比,Tg中检测到的SC丰度较低。使用更灵敏的技术(二维电泳后再进行Western blot),在Tg大鼠中观察到更高水平的游离CI和SC (I-III2和I-III2- iv)中组装CI的相对丰度降低。凝胶内活性测定显示,CI (CI + SC-CI)的总活性在Tg中比WT低,而Tg样品显示SC-CI相关活性显著降低。这种CI组装的改变与氮氧化应激和线粒体融合-裂变参数的变化有关。为了评估CI的组成,我们将LC-MS /MS应用于BN-PAGE分离的CI,发现在哺乳动物中描述的45个亚基中有11个在Tg中含量较低。我们检测了核源性NDUFA9亚基的水平,这对CI组装至关重要,并发现Tg中细胞质部分的水平较高,线粒体部分的水平较低,这表明脑淀粉样变性影响了CI亚基从细胞质到线粒体的输入,从而破坏了SC的稳定。这是第一个描述脑淀粉样变性动物模型海马中SC的类型、丰度和活性的报告。为阿尔茨海默病特征的脑生物能量缺陷的分子机制提供了额外的实验证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Supramolecular Architecture of Mitochondrial Complex I in the Rat Brain Is Altered by Alzheimer's-Like Cerebral Amyloidosis

The Supramolecular Architecture of Mitochondrial Complex I in the Rat Brain Is Altered by Alzheimer's-Like Cerebral Amyloidosis

Mitochondrial respiratory complexes are organized into supercomplexes (SC) to regulate electron flow and mitigate oxidative stress. Alterations in SC organization in the brain may affect energy expenditure, oxidative stress, and neuronal survival. In this report, we investigated the amount, activity and organization of mitochondrial complex I (CI) in the hippocampus of 12-month-old McGill-R-Thy1-APP transgenic (Tg) rats, an animal model of Alzheimer's-like cerebral amyloidosis. By means of BN-PAGE, we found that the organization of SC did not differ between genotypes, but a lower abundance of SC was detected in Tg compared to wild-type (WT) rats. Using a more sensitive technique (2-D electrophoresis followed by Western blot), higher levels of free CI and a decrease in the relative abundance of assembled CI in SC (I-III2 and I-III2-IV) were observed in Tg rats. In-gel activity assays showed that the total activity of CI (CI + SC-CI) is lower in Tg compared to WT, while Tg samples show a significant decrease in SC-CI-associated activity. This alteration in CI assembly was associated with nitro-oxidative stress and changes in mitochondrial fusion-fission parameters. To assess CI composition, we applied LC–MS/MS to the isolated CI from BN-PAGE and found that 11 of 45 subunits described in mammals were found to be less abundant in Tg. We examined the levels of the nuclear-derived NDUFA9 subunit, which is critical for CI assembly, and found higher levels in the cytoplasmic fraction and lower levels in the mitochondrial fraction in Tg, suggesting that brain amyloidosis affects the import of CI subunits from the cytosol to the mitochondria, destabilizing the SC. This is the first report to characterize the types, abundance and activity of SC in the hippocampus of an animal model of cerebral amyloidosis, providing additional experimental evidence for the molecular mechanisms underlying the brain bioenergetic deficit characteristic of Alzheimer's disease.

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来源期刊
Journal of Neurochemistry
Journal of Neurochemistry 医学-神经科学
CiteScore
9.30
自引率
2.10%
发文量
181
审稿时长
2.2 months
期刊介绍: Journal of Neurochemistry focuses on molecular, cellular and biochemical aspects of the nervous system, the pathogenesis of neurological disorders and the development of disease specific biomarkers. It is devoted to the prompt publication of original findings of the highest scientific priority and value that provide novel mechanistic insights, represent a clear advance over previous studies and have the potential to generate exciting future research.
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