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全基因组关联分析和外显子组关联分析血液线粒体 DNA 拷贝数鉴定出 71 个位点,并突出了其在痴呆症中潜在的因果作用。

GWAS and ExWAS of blood mitochondrial DNA copy number identifies 71 loci and highlights a potential causal role in dementia.

机构信息

Department of Biochemistry and Biomedical Sciences, McMaster University, Hamilton, Canada.

Department of Pathology and Molecular Medicine, McMaster University, Hamilton, Canada.

出版信息

Elife. 2022 Jan 13;11:e70382. doi: 10.7554/eLife.70382.

Abstract

BACKGROUND

Mitochondrial DNA copy number (mtDNA-CN) is an accessible blood-based measurement believed to capture underlying mitochondrial (MT) function. The specific biological processes underpinning its regulation, and whether those processes are causative for disease, is an area of active investigation.

METHODS

We developed a novel method for array-based mtDNA-CN estimation suitable for biobank-scale studies, called 'automatic mitochondrial copy (AutoMitoC).' We applied AutoMitoC to 395,781 UKBiobank study participants and performed genome- and exome-wide association studies, identifying novel common and rare genetic determinants. Finally, we performed two-sample Mendelian randomization to assess whether genetically low mtDNA-CN influenced select MT phenotypes.

RESULTS

Overall, genetic analyses identified 71 loci for mtDNA-CN, which implicated several genes involved in rare mtDNA depletion disorders, deoxynucleoside triphosphate (dNTP) metabolism, and the MT central dogma. Rare variant analysis identified mutation carriers as having higher mtDNA-CN (beta = 0.23 SDs; 95% CI, 0.18-0.29; p=2.6 × 10), a potential therapeutic target for patients with mtDNA depletion disorders, but at increased risk of breast cancer (OR = 1.91; 95% CI, 1.52-2.40; p=2.7 × 10). Finally, Mendelian randomization analyses suggest a causal effect of low mtDNA-CN on dementia risk (OR = 1.94 per 1 SD decrease in mtDNA-CN; 95% CI, 1.55-2.32; p=7.5 × 10).

CONCLUSIONS

Altogether, our genetic findings indicate that mtDNA-CN is a complex biomarker reflecting specific MT processes related to mtDNA regulation, and that these processes are causally related to human diseases.

FUNDING

No funds supported this specific investigation. Awards and positions supporting authors include: Canadian Institutes of Health Research (CIHR) Frederick Banting and Charles Best Canada Graduate Scholarships Doctoral Award (MC, PM); CIHR Post-Doctoral Fellowship Award (RM); Wellcome Trust Grant number: 099313/B/12/A; Crasnow Travel Scholarship; Bongani Mayosi UCT-PHRI Scholarship 2019/2020 (TM); Wellcome Trust Health Research Board Irish Clinical Academic Training (ICAT) Programme Grant Number: 203930/B/16/Z (CJ); European Research Council COSIP Grant Number: 640580 (MO); E.J. Moran Campbell Internal Career Research Award (MP); CISCO Professorship in Integrated Health Systems and Canada Research Chair in Genetic and Molecular Epidemiology (GP).

摘要

背景

线粒体 DNA 拷贝数(mtDNA-CN)是一种可通过血液检测的指标,被认为可以反映潜在的线粒体(MT)功能。其调节的具体生物学过程,以及这些过程是否是疾病的原因,是一个活跃的研究领域。

方法

我们开发了一种新的基于阵列的 mtDNA-CN 估计方法,称为“自动线粒体拷贝(AutoMitoC)”。我们将 AutoMitoC 应用于 395781 名英国生物库研究参与者,并进行了全基因组和外显子组关联研究,确定了新的常见和罕见遗传决定因素。最后,我们进行了两样本 Mendelian 随机化分析,以评估遗传上低 mtDNA-CN 是否会影响特定的 MT 表型。

结果

总体而言,遗传分析确定了 71 个 mtDNA-CN 位点,这些位点涉及到几种与罕见的 mtDNA 耗竭障碍、脱氧核苷三磷酸(dNTP)代谢和 MT 中心法则有关的基因。罕见变异分析发现突变携带者的 mtDNA-CN 更高(beta = 0.23 SDs;95%CI,0.18-0.29;p=2.6×10),这可能是 mtDNA 耗竭障碍患者的潜在治疗靶点,但乳腺癌风险增加(OR=1.91;95%CI,1.52-2.40;p=2.7×10)。最后,Mendelian 随机化分析表明,低 mtDNA-CN 与痴呆风险之间存在因果关系(mtDNA-CN 每降低 1 SD,OR=1.94;95%CI,1.55-2.32;p=7.5×10)。

结论

总之,我们的遗传发现表明,mtDNA-CN 是一种复杂的生物标志物,反映了与 mtDNA 调节相关的特定 MT 过程,这些过程与人类疾病有因果关系。

资金

没有资金支持这项具体的研究。支持作者的奖项和职位包括:加拿大卫生研究院(CIHR)弗雷德里克·班廷和查尔斯·贝斯特加拿大研究生奖学金博士奖(MC、PM);CIHR 博士后奖学金(RM);惠康信托基金会拨款:099313/B/12/A;Crasnow 旅行奖学金; Bongani Mayosi UCT-PHRI 奖学金 2019/2020(TM);惠康信托健康研究委员会爱尔兰临床学术培训(ICAT)计划拨款:203930/B/16/Z(CJ);欧洲研究理事会 COSIP 拨款:640580(MO);E.J.Moran Campbell 内部职业研究奖(MP);CISCO 综合健康系统教授职位和加拿大遗传与分子流行病学研究主席(GP)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cbb/8865845/127d7b231818/elife-70382-fig1.jpg

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