Sazer S, Sherwood S W
Department of Biochemistry, University of Oxford, UK.
J Cell Sci. 1990 Nov;97 ( Pt 3):509-16. doi: 10.1242/jcs.97.3.509.
Cell growth and division require the doubling of cellular constituents followed by their equal distribution to the two daughter cells. Within a growing population, the ratio of mitochondrial to cellular volume is maintained, as is the number of mitochondrial genomes per cell. The mechanisms responsible for coordinating nuclear and mitochondrial DNA synthesis, and for balancing increases in cell and mitochondrial size are not well understood. In studies of the fission yeast Schizosaccharomyces pombe we quantified cellular and mitochondrial DNA content by both Southern blot analysis and flow cytometry of cells stained with a variety of DNA-binding fluorochromes, which we show are able to detect nuclear and mitochondrial DNA with different efficiencies. In the conditional cell division cycle mutant cdc10, which is unable to initiate nuclear DNA synthesis, we found that there was an increase in the mitochondrial DNA content in the absence of nuclear DNA replication. This demonstrates that mitochondrial and nuclear DNA synthesis are not obligately linked. We also show that mitochondrial DNA replication is not required for the increase in mitochondrial size that occurs as cells elongate, although this results in a decrease in the ratio of mitochondrial DNA to mitochondrial volume.
细胞生长和分裂需要细胞成分加倍,然后将其平均分配到两个子细胞中。在不断增长的细胞群体中,线粒体与细胞体积的比例以及每个细胞中线粒体基因组的数量都会保持恒定。负责协调核DNA和线粒体DNA合成以及平衡细胞和线粒体大小增加的机制目前尚不清楚。在裂殖酵母粟酒裂殖酵母的研究中,我们通过Southern印迹分析以及用多种DNA结合荧光染料染色的细胞的流式细胞术来定量细胞和线粒体的DNA含量,结果表明我们能够以不同效率检测核DNA和线粒体DNA。在条件性细胞分裂周期突变体cdc10中,该突变体无法启动核DNA合成,我们发现在没有核DNA复制的情况下线粒体DNA含量会增加。这表明线粒体DNA和核DNA合成并非必然相关。我们还表明,细胞伸长时线粒体大小的增加并不需要线粒体DNA复制,尽管这会导致线粒体DNA与线粒体体积的比例下降。