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在大鼠和人细胞中缺乏 NADH:泛醌氧化还原酶 Ndufc2 亚基的情况下,对线粒体功能和结构进行体外表征。

In vitro characterization of mitochondrial function and structure in rat and human cells with a deficiency of the NADH: ubiquinone oxidoreductase Ndufc2 subunit.

机构信息

Department of Clinical and Molecular Medicine, School of Medicine and Psychology, Sapienza University of Rome, Rome, Italy.

Cellular Diagnostics Unit, Azienda Sant'Andrea University Hospital, Rome, Italy.

出版信息

Hum Mol Genet. 2017 Dec 1;26(23):4541-4555. doi: 10.1093/hmg/ddx333.

Abstract

Ndufc2, a subunit of the NADH: ubiquinone oxidoreductase, plays a key role in the assembly and activity of complex I within the mitochondrial OXPHOS chain. Its deficiency has been shown to be involved in diabetes, cancer and stroke. To improve our knowledge on the mechanisms underlying the increased disease risk due to Ndufc2 reduction, we performed the present in vitro study aimed at the fine characterization of the derangements in mitochondrial structure and function consequent to Ndufc2 deficiency. We found that both fibroblasts obtained from skin of heterozygous Ndufc2 knock-out rat model showed marked mitochondrial dysfunction and PBMC obtained from subjects homozygous for the TT genotype of the rs11237379/NDUFC2 variant, previously shown to associate with reduced gene expression, demonstrated increased generation of reactive oxygen species and mitochondrial damage. The latter was associated with increased oxidative stress and significant ultrastructural impairment of mitochondrial morphology with a loss of internal cristae. In both models the exposure to stress stimuli, such as high-NaCl concentration or LPS, exacerbated the mitochondrial damage and dysfunction. Resveratrol significantly counteracted the ROS generation. These findings provide additional insights on the role of an altered pattern of mitochondrial structure-function as a cause of human diseases. In particular, they contribute to underscore a potential genetic risk factor for cardiovascular diseases, including stroke.

摘要

Ndufc2 是 NADH:泛醌氧化还原酶的一个亚基,在线粒体 OXPHOS 链中复合体 I 的组装和活性中起着关键作用。其缺乏已被证明与糖尿病、癌症和中风有关。为了提高我们对由于 Ndufc2 减少导致疾病风险增加的机制的认识,我们进行了本体外研究,旨在精细表征 Ndufc2 缺乏导致的线粒体结构和功能紊乱。我们发现,来自杂合 Ndufc2 敲除大鼠模型皮肤的成纤维细胞均表现出明显的线粒体功能障碍,而来自 rs11237379/NDUFC2 变异 TT 基因型纯合子个体的 PBMC(先前显示与基因表达降低相关)表现出活性氧生成和线粒体损伤增加。后者与氧化应激增加和线粒体形态的超微结构损伤显著相关,表现为内部嵴的丧失。在这两种模型中,暴露于应激刺激(如高 NaCl 浓度或 LPS)会加剧线粒体损伤和功能障碍。白藜芦醇可显著抑制 ROS 的生成。这些发现为线粒体结构-功能改变作为人类疾病原因的作用提供了更多的见解。特别是,它们有助于强调心血管疾病(包括中风)的一个潜在遗传危险因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a20/5886163/0876f5e439c3/ddx333f1.jpg

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