Translational Gerontology Branch, National Institute on Aging, Baltimore, Maryland, USA.
Laboratory of Clinical Investigation, National Institute on Aging, Baltimore, Maryland, USA.
Aging Cell. 2021 Nov;20(11):e13487. doi: 10.1111/acel.13487. Epub 2021 Oct 6.
The association between blood-based estimates of mitochondrial DNA parameters, mitochondrial DNA copy number (mtDNA-CN) and heteroplasmy load, with skeletal muscle bioenergetic capacity was evaluated in 230 participants of the Baltimore Longitudinal Study of Aging (mean age:74.7 years, 53% women). Participants in the study sample had concurrent data on muscle oxidative capacity (τ ) assessed by P magnetic resonance spectroscopy, and mitochondrial DNA parameters estimated from whole-genome sequencing data. In multivariable linear regression models, adjusted for age, sex, extent of phosphocreatine (PCr) depletion, autosomal sequencing coverage, white blood cell total, and differential count, as well as platelet count, mtDNA-CN and heteroplasmy load were not significantly associated with τ (both p > 0.05). However, in models evaluating whether the association between mtDNA-CN and τ varied by heteroplasmy load, there was a significant interaction between mtDNA-CN and heteroplasmy load (p = 0.037). In stratified analysis, higher mtDNA-CN was significantly associated with lower τ among participants with high heteroplasmy load (n = 84, β (SE) = -0.236 (0.115), p-value = 0.044), but not in those with low heteroplasmy load (n = 146, β (SE) = 0.046 (0.119), p-value = 0.702). Taken together, mtDNA-CN and heteroplasmy load provide information on muscle bioenergetics. Thus, mitochondrial DNA parameters may be considered proxy measures of mitochondrial function that can be used in large epidemiological studies, especially when comparing subgroups.
在 230 名巴尔的摩纵向衰老研究(平均年龄:74.7 岁,53%为女性)参与者中,评估了基于血液的线粒体 DNA 参数估计值(线粒体 DNA 拷贝数(mtDNA-CN)和异质性负荷)与骨骼肌生物能量能力之间的关联。研究样本中的参与者同时具有通过 P 磁共振波谱法评估的肌肉氧化能力(τ)和从全基因组测序数据估计的线粒体 DNA 参数的数据。在多变量线性回归模型中,调整了年龄、性别、磷酸肌酸(PCr)耗竭程度、常染色体测序覆盖率、白细胞总数和差异计数以及血小板计数后,mtDNA-CN 和异质性负荷与 τ 无显著相关性(均 p>0.05)。然而,在评估 mtDNA-CN 与 τ 之间的关联是否因异质性负荷而异的模型中,mtDNA-CN 和异质性负荷之间存在显著的相互作用(p=0.037)。在分层分析中,在异质性负荷较高的参与者中(n=84,β(SE)=-0.236(0.115),p 值=0.044),较高的 mtDNA-CN 与较低的 τ 显著相关,但在异质性负荷较低的参与者中(n=146,β(SE)=0.046(0.119),p 值=0.702)并非如此。综上所述,mtDNA-CN 和异质性负荷提供了有关肌肉生物能量的信息。因此,线粒体 DNA 参数可以被视为线粒体功能的替代指标,可用于大型流行病学研究,特别是在比较亚组时。