Department of Biochemistry and Molecular Biology, UMDNJ-New Jersey Medical School, Newark, NJ 07103, USA.
Nucleic Acids Res. 2010 Oct;38(19):6466-76. doi: 10.1093/nar/gkq493. Epub 2010 Jun 8.
Mammalian mitochondria contain full-length genome and a single-stranded 7S DNA. Although the copy number of mitochondrial DNA (mtDNA) varies depending on the cell type and also in response to diverse environmental stresses, our understanding of how mtDNA and 7S DNA are maintained and regulated is limited, partly due to lack of reliable in vitro assay systems that reflect the in vivo functionality of mitochondria. Here we report an in vitro assay system to measure synthesis of both mtDNA and 7S DNA under a controllable in vitro condition. With this assay system, we demonstrate that the replication capacity of mitochondria correlates with endogenous copy numbers of mtDNA and 7S DNA. Our study also shows that higher nucleotide concentrations increasingly promote 7S DNA synthesis but not mtDNA synthesis. Consistently, the mitochondrial capacity to synthesize 7S DNA but not mtDNA noticeably varied along the cell cycle, reaching its highest level in S phase. These findings suggest that syntheses of mtDNA and 7S DNA proceed independently and that the mitochondrial capacity to synthesize 7S DNA dynamically changes not only with cell-cycle progression but also in response to varying nucleotide concentrations.
哺乳动物的线粒体含有完整的基因组和单链 7S DNA。尽管线粒体 DNA(mtDNA)的拷贝数取决于细胞类型,并且也会对不同的环境压力做出响应,但我们对 mtDNA 和 7S DNA 的维持和调节方式的了解是有限的,部分原因是缺乏可靠的体外测定系统来反映线粒体的体内功能。在这里,我们报告了一种在可控制的体外条件下测量 mtDNA 和 7S DNA 合成的体外测定系统。使用该测定系统,我们证明了线粒体的复制能力与 mtDNA 和 7S DNA 的内源性拷贝数相关。我们的研究还表明,较高的核苷酸浓度会越来越多地促进 7S DNA 的合成,但不会促进 mtDNA 的合成。一致地,线粒体合成 7S DNA 的能力而不是 mtDNA 的能力在细胞周期中明显变化,在 S 期达到最高水平。这些发现表明,mtDNA 和 7S DNA 的合成是独立进行的,并且线粒体合成 7S DNA 的能力不仅随着细胞周期的进展而动态变化,而且还响应于变化的核苷酸浓度而变化。