Mitochondria and Female Germline Stem Cells-A Mitochondrial DNA Perspective.
Justin C St JohnPublished in: Cells (2019)
Mitochondria and mitochondrial DNA have important roles to play in development. In primordial germ cells, they progress from small numbers to populate the maturing oocyte with high numbers to support post-fertilization events. These processes take place under the control of significant changes in DNA methylation and other epigenetic modifiers, as well as changes to the DNA methylation status of the nuclear-encoded mitochondrial DNA replication factors. Consequently, the differentiating germ cell requires significant synchrony between the two genomes in order to ensure that they are fit for purpose. In this review, I examine these processes in the context of female germline stem cells that are isolated from the ovary and those derived from embryonic stem cells and reprogrammed somatic cells. Although our knowledge is limited in this respect, I provide predictions based on other cellular systems of what is expected and provide insight into how these cells could be used in clinical medicine.
Keyphrases
- mitochondrial dna
- dna methylation
- copy number
- stem cells
- induced apoptosis
- cell cycle arrest
- germ cell
- gene expression
- cell death
- oxidative stress
- genome wide
- embryonic stem cells
- healthcare
- magnetic resonance imaging
- endoplasmic reticulum stress
- magnetic resonance
- dna repair
- signaling pathway
- reactive oxygen species
- bone marrow
- pi k akt