Seibel Peter, Di Nunno Chiara, Kukat Christian, Schäfer Ingo, Del Bo Roberto, Bordoni Andreina, Comi Giacomo P, Schön Astrid, Capuano Ferdinando, Latorre Dominga, Villani Gaetano
Department of Molecular Cell Therapy, Center for Biotechnology and Biomedicine, Universität Leipzig, Deutscher Platz 5, 04103 Leipzig, Germany.
Nucleic Acids Res. 2008 Oct;36(18):5872-81. doi: 10.1093/nar/gkn592. Epub 2008 Sep 16.
Ever increasing evidence has been provided on the accumulation of mutations in the mitochondrial DNA (mtDNA) during the aging process. However, the lack of direct functional consequences of the mutant mtDNA load on the mitochondria-dependent cell metabolism has raised many questions on the physiological importance of the age-related mtDNA variations. In the present work, we have analyzed the bioenergetic properties associated with the age-related T414G mutation of the mtDNA control region in transmitochondrial cybrids. The results show that the T414G mutation does not cause per se any detectable bioenergetic change. Moreover, three mtDNA mutations clustered in the 16S ribosomal RNA gene cosegregated together with the T414G in the same cybrid cell line. Two of them, namely T1843C and A1940G, are novel and associate with a negative bioenergetic phenotype. The results are discussed in the more general context of the complex heterogeneity and the dramatic instability of the mitochondrial genome during cell culture of transmitochondrial cybrids.
越来越多的证据表明,在衰老过程中,线粒体DNA(mtDNA)会积累突变。然而,突变型mtDNA负荷对线粒体依赖性细胞代谢缺乏直接的功能影响,这引发了许多关于与年龄相关的mtDNA变异的生理重要性的问题。在本研究中,我们分析了与线粒体DNA控制区与年龄相关的T414G突变相关的生物能量特性,该突变存在于线粒体杂交细胞中。结果表明,T414G突变本身不会引起任何可检测到的生物能量变化。此外,在16S核糖体RNA基因中聚集的三个mtDNA突变与T414G在同一杂交细胞系中共分离。其中两个,即T1843C和A1940G,是新发现的突变,且与负性生物能量表型相关。本文在更广泛的背景下讨论了线粒体杂交细胞在细胞培养过程中线粒体基因组复杂的异质性和显著的不稳定性。