Loss of the antioxidant enzyme CuZnSOD (Sod1) mimics an age-related increase in absolute mitochondrial DNA copy number in the skeletal muscle.

AGE Pub Date : 2016-08-01 Epub Date: 2016-07-21 DOI:10.1007/s11357-016-9930-1
Dustin R Masser, Nicholas W Clark, Holly Van Remmen, Willard M Freeman
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引用次数: 19

Abstract

Mitochondria contain multiple copies of the circular mitochondrial genome (mtDNA) that encodes ribosomal RNAs and proteins locally translated for oxidative phosphorylation. Loss of mtDNA integrity, both altered copy number and increased mutations, is implicated in cellular dysfunction with aging. Published data on mtDNA copy number and aging is discordant which may be due to methodological limitations for quantifying mtDNA copy number. Existing quantitative PCR (qPCR) mtDNA copy number quantification methods provide only relative abundances and are problematic to normalize to different template input amounts and across tissues/sample types. As well, existing methods cannot quantify mtDNA copy number in subcellular isolates, such as isolated mitochondria and neuronal synaptic terminals, which lack nuclear genomic DNA for normalization. We have developed and validated a novel absolute mtDNA copy number quantitation method that uses chip-based digital polymerase chain reaction (dPCR) to count the number of copies of mtDNA and used this novel method to assess the literature discrepancy in which there is no clear consensus whether mtDNA numbers change with aging in skeletal muscle. Skeletal muscle in old mice was found to have increased absolute mtDNA numbers compared to young controls. Furthermore, young Sod1 -/- mice were assessed and show an age-mimicking increase in skeletal muscle mtDNA. These findings reproduce a number of previous studies that demonstrate age-related increases in mtDNA. This simple and cost effective dPCR approach should enable precise and accurate mtDNA copy number quantitation in mitochondrial studies, eliminating contradictory studies of mitochondrial DNA content with aging.

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抗氧化酶CuZnSOD (Sod1)的丧失模拟了骨骼肌中线粒体DNA绝对拷贝数与年龄相关的增加。
线粒体含有多个线粒体基因组(mtDNA)拷贝,其编码核糖体rna和局部翻译氧化磷酸化的蛋白质。mtDNA完整性的丧失,包括拷贝数的改变和突变的增加,与衰老的细胞功能障碍有关。已发表的mtDNA拷贝数与衰老的数据不一致,这可能是由于量化mtDNA拷贝数的方法限制。现有的定量PCR (qPCR) mtDNA拷贝数定量方法仅提供相对丰度,并且难以归一化到不同的模板输入量和跨组织/样本类型。此外,现有方法无法量化亚细胞分离物(如分离的线粒体和神经元突触终末)的mtDNA拷贝数,因为它们缺乏核基因组DNA进行归一化。我们开发并验证了一种新的mtDNA绝对拷贝数定量方法,该方法使用基于芯片的数字聚合酶链反应(dPCR)来计数mtDNA的拷贝数,并使用这种新方法来评估文献差异,其中mtDNA数量是否随骨骼肌衰老而变化没有明确的共识。与年轻的对照组相比,老年小鼠的骨骼肌mtDNA的绝对数量增加了。此外,对年轻的Sod1 -/-小鼠进行了评估,发现骨骼肌mtDNA的增加与年龄相仿。这些发现再现了之前的一些研究,这些研究表明mtDNA与年龄有关。这种简单且经济有效的dPCR方法可以在线粒体研究中精确和准确地定量mtDNA拷贝数,消除线粒体DNA含量与衰老的矛盾研究。
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AGE
AGE 医学-老年医学
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