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线粒体复合物 I 亚基 Ndufs2 的表达减少不会影响小鼠的健康寿命。

Reduced expression of mitochondrial complex I subunit Ndufs2 does not impact healthspan in mice.

机构信息

Department of Medicine Division of Pulmonary and Critical Care Medicine, Northwestern University Feinberg School of Medicine, Chicago, IL, USA.

Department of Pathology, Northwestern University Feinberg School of Medicine, Chicago, IL, USA.

出版信息

Sci Rep. 2022 Mar 25;12(1):5196. doi: 10.1038/s41598-022-09074-3.

Abstract

Aging in mammals leads to reduction in genes encoding the 45-subunit mitochondrial electron transport chain complex I. It has been hypothesized that normal aging and age-related diseases such as Parkinson's disease are in part due to modest decrease in expression of mitochondrial complex I subunits. By contrast, diminishing expression of mitochondrial complex I genes in lower organisms increases lifespan. Furthermore, metformin, a putative complex I inhibitor, increases healthspan in mice and humans. In the present study, we investigated whether loss of one allele of Ndufs2, the catalytic subunit of mitochondrial complex I, impacts healthspan and lifespan in mice. Our results indicate that Ndufs2 hemizygous mice (Ndufs2) show no overt impairment in aging-related motor function, learning, tissue histology, organismal metabolism, or sensitivity to metformin in a C57BL6/J background. Despite a significant reduction of Ndufs2 mRNA, the mice do not demonstrate a significant decrease in complex I function. However, there are detectable transcriptomic changes in individual cell types and tissues due to loss of one allele of Ndufs2. Our data indicate that a 50% decline in mRNA of the core mitochondrial complex I subunit Ndufs2 is neither beneficial nor detrimental to healthspan.

摘要

哺乳动物的衰老会导致编码 45 亚基线粒体电子传递链复合物 I 的基因减少。有人假设,正常衰老和帕金森病等与年龄相关的疾病部分是由于线粒体复合物 I 亚基的表达适度下降所致。相比之下,较低等生物中线粒体复合物 I 基因的表达减少会延长寿命。此外,二甲双胍是一种假定的复合物 I 抑制剂,可增加小鼠和人类的健康寿命。在本研究中,我们研究了缺失线粒体复合物 I 的催化亚基 Ndufs2 的一个等位基因是否会影响小鼠的健康寿命和寿命。我们的结果表明,Ndufs2 半合子小鼠(Ndufs2)在 C57BL6/J 背景下,衰老相关的运动功能、学习能力、组织组织学、机体代谢或对二甲双胍的敏感性均无明显损伤。尽管 Ndufs2 mRNA 显著减少,但小鼠的复合物 I 功能并没有明显下降。然而,由于 Ndufs2 的一个等位基因缺失,个别细胞类型和组织中存在可检测的转录组变化。我们的数据表明,核心线粒体复合物 I 亚基 Ndufs2 的 mRNA 下降 50%对健康寿命既没有好处也没有坏处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74d2/8956724/0812596733d0/41598_2022_9074_Fig1_HTML.jpg

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