Melicher Dóra, Illés Anett, Littvay Levente, Tárnoki Ádám Domonkos, Tárnoki Dávid László, Bikov András, Kunos László, Csabán Dóra, Buzás Edit Irén, Molnár Mária Judit, Falus András
Department of Genetics, Cell and Immunobiology, Semmelweis University, Budapest, Hungary.
MTA-SE Immunproteogenomics Extracellular Vesicle Research Group.
Arch Med Sci. 2019 Mar 25;17(5):1191-1199. doi: 10.5114/aoms.2019.83173. eCollection 2021.
Recent experimental and population studies have highlighted the existence of telomere-mitochondria interplay. Besides studies revealing the molecular mechanisms underlying the associations of telomere defects and mitochondrial functions, investigations of mitochondrial DNA copy number (mtDNAcn) and telomere length (TL) in healthy and disease phenotypes have likewise begun, with the aim of gaining more insights about their relationship in humans.
A total of 142 asymptomatic adult twins, comprising 96 monozygotic (MZ) and 46 dizygotic (DZ) twins (mean age: 50.54 ±15.43 years), members of the Hungarian Twin Registry, were included in the analysis. Applying the qPCR standard curve method, we investigated the relationship of mtDNA copy number, telomere length and clinical data, besides assessing co-twin similarities of MZ and DZ twins for their mtDNAcn and TL measures.
We found that twins were similar in their intraclass correlation coefficients irrespective of zygosity, suggesting a possibly more important role of common (shared) environmental factors compared to non-shared (unique) environmental and to a smaller degree also individual genetic influences. We confirmed a significant positive association between mtDNAcn and TL ( = 0.28, < 0.01) in age- and sex-corrected analysis. Following bivariate estimates and correction with significant predictors, the independent positive associations were further verified.
Our results extend the until now modest number of studies investigating mtDNAcn and TL simultaneously in humans. In addition, we are the first to examine the relationship between mtDNAcn and telomere length in MZ and DZ twin subjects.
最近的实验和人群研究突显了端粒与线粒体之间相互作用的存在。除了揭示端粒缺陷与线粒体功能关联背后分子机制的研究外,针对健康和疾病表型中线粒体DNA拷贝数(mtDNAcn)和端粒长度(TL)的研究也已展开,目的是更深入了解它们在人类中的关系。
分析纳入了匈牙利双胞胎登记处的142名无症状成年双胞胎,包括96对同卵双胞胎(MZ)和46对异卵双胞胎(DZ)(平均年龄:50.54±15.43岁)。应用qPCR标准曲线法,我们研究了mtDNA拷贝数、端粒长度与临床数据之间的关系,此外还评估了MZ和DZ双胞胎在mtDNAcn和TL测量方面的同卵双胞胎相似性。
我们发现,无论合子性如何,双胞胎的组内相关系数都相似,这表明与非共享(独特)环境因素相比,共同(共享)环境因素可能发挥更重要的作用,个体遗传影响的程度相对较小。在年龄和性别校正分析中,我们证实了mtDNAcn与TL之间存在显著正相关(=0.28,<0.01)。经过双变量估计并校正显著预测因子后,独立正相关得到进一步验证。
我们的结果扩展了目前在人类中同时研究mtDNAcn和TL的少量研究。此外,我们是首个在MZ和DZ双胞胎受试者中研究mtDNAcn与端粒长度之间关系的。