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线粒体 DNA 定量的人类质量评估:MITONAUTS,一项国际多中心调查。

Quality assessment of human mitochondrial DNA quantification: MITONAUTS, an international multicentre survey.

机构信息

Department of Pathology & Laboratory Medicine, University of British Columbia, Vancouver, Canada.

出版信息

Mitochondrion. 2011 May;11(3):520-7. doi: 10.1016/j.mito.2011.01.011. Epub 2011 Feb 22.

Abstract

Mitochondrial DNA quantification by qPCR is used in the context of many diseases and toxicity studies but comparison of results between laboratories is challenging. Through two multigroup distributions of DNA samples from human cell lines, the MITONAUTS group anonymously compared mtDNA/nDNA quantification across nine laboratories involved in HIV research worldwide. Eight of the nine sites showed significant correlation between them (mean raw data R(2)=0.664; log(10)-transformed data R(2)=0.844). Although mtDNA/nDNA values were well correlated between sites, the inter-site variability on the absolute measurements remained high with a mean (range) coefficient of variation of 71 (37-212) %. Some variability appeared cell line-specific, probably due to chromosomal alterations or pseudogenes affecting the quantification of certain genes, while within cell line variability was likely due to differences in calibration of the standard curves. The use of two mtDNA and two single copy nDNA genes with highly specific primers to quantify each genome would help address copy number variants. Our results indicate that sample shipment must be done frozen and that absolute mtDNA/nDNA ratio values cannot readily be compared between laboratories, especially if assessing cultured cell mtDNA content. However, within laboratory and relative mtDNA/nDNA comparisons between laboratories should be reliable.

摘要

实时荧光定量 PCR 法检测线粒体 DNA 用于多种疾病和毒性研究,但实验室间的结果比较具有挑战性。通过两组来自人细胞系的 DNA 样本的多组分布,MITONAUTS 小组匿名比较了全球参与 HIV 研究的 9 个实验室的 mtDNA/nDNA 定量。其中 8 个实验室之间存在显著相关性(原始数据 R²=0.664;对数转换后数据 R²=0.844)。尽管 mtDNA/nDNA 值在各实验室之间具有良好的相关性,但绝对测量值的实验室间变异性仍然很高,平均值(范围)变异系数为 71%(37-212%)。一些变异性似乎是细胞系特异性的,可能是由于染色体改变或假基因影响了某些基因的定量,而细胞系内的变异性可能是由于标准曲线的校准差异所致。使用两个具有高度特异性引物的 mtDNA 和两个单拷贝 nDNA 基因来定量每个基因组,将有助于解决拷贝数变异问题。我们的结果表明,样本必须冷冻运输,并且实验室间的绝对 mtDNA/nDNA 比值不能轻易比较,特别是在评估培养细胞的 mtDNA 含量时。然而,实验室内部和实验室间的相对 mtDNA/nDNA 比较应该是可靠的。

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