Mitochondrial DNA replication during differentiation of murine embryonic stem cells
Author:
Facucho-Oliveira Joao M.1, Alderson Jon1, Spikings Emma C.1, Egginton Stuart2, St. John Justin C.1
Affiliation:
1. The Mitochondrial and Reproductive Genetics Group, The Medical School, The University of Birmingham, Birmingham, B15 2TT, UK 2. The Angiogenesis Research Group, The Medical School, The University of Birmingham, Birmingham, B15 2TT, UK
Abstract
Oxidative phosphorylation (OXPHOS), the intracellular process that generates the majority of the ATP of a cell through the electron-transfer chain, is highly dependent on proteins encoded by the mitochondrial genome (mtDNA). MtDNA replication is regulated by the nuclear-encoded mitochondrial transcription factor A (TFAM) and the mitochondrial-specific DNA polymerase gamma, which consists of a catalytic (POLG) and an accessory (POLG2) subunit. Differentiation of pluripotent embryonic stem cells (ESCs) into specific cell types requires expansion of discrete populations of mitochondria and mtDNA replication to meet the specific metabolic requirements of the cell. We determined by real-time PCR that expression of pluripotent markers is reduced before the upregulation of Polg, Polg2 and Tfam in spontaneously differentiating R1 murine (m)ESCs, along with transient increases in mtDNA copy number. In D3 mESCs, the initial transient increase did not take place. However, precursors of neuronal and cardiomyocyte differentiation were positive for both POLG and TFAM. Similar-stage ESCs also showed active mtDNA replication, identified by 5-bromo-2′-deoxy-uridine labelling, as mtDNA copy number increased. Retinoic-acid-induced differentiation resulted in more consistent patterns of replication and upregulation of Polg, Polg2 and Tfam, whereas siRNA knockdown demonstrated that steady-state expression of POLG is essential for maintaining pluripotency.
Publisher
The Company of Biologists
Reference72 articles.
1. Alam, T. I., Kanki, T., Muta, T., Ukaji, K., Abe, Y., Nakayama, H., Takio, K., Hamasaki, N. and Kang, D. (2003). Human mitochondrial DNA is packaged with TFAM. Nucleic Acids Res.31, 1640-1645. 2. Anderson, S., Bankier, A. T., Barrell, B. G., de Bruijn, M. H., Coulson, A. R., Drouin, J., Eperon, I. C., Nierlich, D. P., Roe, B. A., Sanger, F. et al. (1981). Sequence and organisation of the human mitochondrial genome. Nature290, 457-465. 3. Bain, G., Kitchens, D., Yao, M., Huettner, J. E. and Gottlieb, D. I. (1995). Embryonic stem cells express neuronal properties in vitro. Dev. Biol.168, 342-357. 4. Berdanier, C. D., Everts, H. B., Hermoyian, C. and Mathews, C. E. (2001). Role of vitamin A in mitochondrial gene expression. Diabetes Res. Clin. Pract. Suppl.54, S11-S27. 5. Bortvin, A., Eggan, K., Skaletsky, H., Akutsu, H., Berry, D. L., Yanagimachi, R.,
Page, D. C. and Jaenisch, R. (2003). Incomplete reactivation of Oct4-related genes in mouse embryos cloned from somatic nuclei. Development130, 1673-1680.
Cited by
252 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|