Gandhi Vishal V, Samuels David C
Center for Human Genetics Research, Department of Molecular Physiology and Biophysics, Vanderbilt University Medical Center, Nashville, TN 37232-0700, USA.
Nucleosides Nucleotides Nucleic Acids. 2011 May;30(5):317-39. doi: 10.1080/15257770.2011.586955.
The deoxyribonucleoside triphosphate (dNTP) pools that support the replication of mitochondrial DNA are physically separated from the rest of the cell by the double membrane of the mitochondria. Perturbed homeostasis of mitochondrial dNTP pools is associated with a set of severe diseases collectively termed mitochondrial DNA depletion syndromes. The degree of interaction of the mitochondrial dNTP pools with the corresponding dNTP pools in the cytoplasm is currently not clear. We reviewed the literature on previously reported simultaneous measurements of mitochondrial and cytoplasmic deoxyribonucleoside triphosphate pools to investigate and quantify the extent of the influence of the cytoplasmic nucleotide metabolism on mitochondrial dNTP pools. We converted the reported measurements to concentrations creating a catalog of paired mitochondrial and cytoplasmic dNTP concentration measurements. Over experiments from multiple laboratories, dNTP concentrations in the mitochondria are highly correlated with dNTP concentrations in the cytoplasm in normal cells in culture (Pearson R = 0.79, p = 3 × 10(-7)) but not in transformed cells. For dTTP and dATP there was a strong linear relationship between the cytoplasmic and mitochondrial concentrations in normal cells. From this linear model we hypothesize that the salvage pathway within the mitochondrion is only capable of forming a concentration of approximately 2 μM of dTTP and dATP, and that higher concentrations require transport of deoxyribonucleotides from the cytoplasm.
支持线粒体DNA复制的脱氧核糖核苷三磷酸(dNTP)池通过线粒体的双层膜与细胞的其余部分在物理上分隔开来。线粒体dNTP池的稳态失衡与一组统称为线粒体DNA耗竭综合征的严重疾病相关。目前尚不清楚线粒体dNTP池与细胞质中相应dNTP池的相互作用程度。我们回顾了关于先前报道的同时测量线粒体和细胞质脱氧核糖核苷三磷酸池的文献,以研究和量化细胞质核苷酸代谢对线粒体dNTP池的影响程度。我们将报道的测量值转换为浓度,创建了一个线粒体和细胞质dNTP浓度配对测量的目录。在多个实验室的实验中,培养的正常细胞中线粒体中的dNTP浓度与细胞质中的dNTP浓度高度相关(皮尔逊相关系数R = 0.79,p = 3×10⁻⁷),但在转化细胞中并非如此。对于dTTP和dATP,正常细胞的细胞质和线粒体浓度之间存在很强的线性关系。基于这个线性模型,我们推测线粒体内的补救途径仅能形成约2μM的dTTP和dATP浓度,而更高的浓度需要脱氧核糖核苷酸从细胞质转运而来。