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代谢疾病中常见线粒体DNA变异的综合关联测试。

Comprehensive association testing of common mitochondrial DNA variation in metabolic disease.

作者信息

Saxena Richa, de Bakker Paul I W, Singer Karyn, Mootha Vamsi, Burtt Noel, Hirschhorn Joel N, Gaudet Daniel, Isomaa Bo, Daly Mark J, Groop Leif, Ardlie Kristin G, Altshuler David

机构信息

Center for Human Genetic Research, Massachusetts General Hospital, Boston, 02114, USA.

出版信息

Am J Hum Genet. 2006 Jul;79(1):54-61. doi: 10.1086/504926. Epub 2006 May 24.

Abstract

Many lines of evidence implicate mitochondria in phenotypic variation: (a) rare mutations in mitochondrial proteins cause metabolic, neurological, and muscular disorders; (b) alterations in oxidative phosphorylation are characteristic of type 2 diabetes, Parkinson disease, Huntington disease, and other diseases; and (c) common missense variants in the mitochondrial genome (mtDNA) have been implicated as having been subject to natural selection for adaptation to cold climates and contributing to "energy deficiency" diseases today. To test the hypothesis that common mtDNA variation influences human physiology and disease, we identified all 144 variants with frequency >1% in Europeans from >900 publicly available European mtDNA sequences and selected 64 tagging single-nucleotide polymorphisms that efficiently capture all common variation (except the hypervariable D-loop). Next, we evaluated the complete set of common mtDNA variants for association with type 2 diabetes in a sample of 3,304 diabetics and 3,304 matched nondiabetic individuals. Association of mtDNA variants with other metabolic traits (body mass index, measures of insulin secretion and action, blood pressure, and cholesterol) was also tested in subsets of this sample. We did not find a significant association of common mtDNA variants with these metabolic phenotypes. Moreover, we failed to identify any physiological effect of alleles that were previously proposed to have been adaptive for energy metabolism in human evolution. More generally, this comprehensive association-testing framework can readily be applied to other diseases for which mitochondrial dysfunction has been implicated.

摘要

多条证据表明线粒体与表型变异有关

(a)线粒体蛋白中的罕见突变会导致代谢、神经和肌肉疾病;(b)氧化磷酸化的改变是2型糖尿病、帕金森病、亨廷顿病和其他疾病的特征;(c)线粒体基因组(mtDNA)中的常见错义变体被认为经历了适应寒冷气候的自然选择,并导致了如今的“能量缺乏”疾病。为了检验常见mtDNA变异影响人类生理和疾病的假说,我们从900多条公开的欧洲mtDNA序列中确定了在欧洲人中频率>1%的所有144个变体,并选择了64个标签单核苷酸多态性,它们能有效捕获所有常见变异(高变D环除外)。接下来,我们在一个由3304名糖尿病患者和3304名匹配的非糖尿病个体组成的样本中,评估了整套常见mtDNA变体与2型糖尿病的关联性。还在该样本的子集中测试了mtDNA变体与其他代谢性状(体重指数、胰岛素分泌和作用指标、血压和胆固醇)的关联性。我们没有发现常见mtDNA变体与这些代谢表型之间存在显著关联。此外,我们未能识别出先前被认为在人类进化中对能量代谢具有适应性的等位基因的任何生理效应。更一般地说,这种全面的关联测试框架可以很容易地应用于其他涉及线粒体功能障碍的疾病。

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