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Author Spotlight: Understanding DNA Damage Response in Mammalian Oocytes and Preimplantation Embryos
Published on: June 23, 2023
ASH1L contributes to oocyte apoptosis by regulating DNA damage
Tuo Zhang1,2,3, Tianhe Ren1, Huan Lin1
1Transformation Engineering Research Center of Chronic Disease Diagnosis and Treatment, Department of Physiology, College of Basic Medicine, Guizhou Medical University, Guiyang, Guizhou Province, China.
Abstract:
In female mammals, the size of the initially established primordial follicle pool within the ovaries determines the reproductive life span. Interestingly, the establishment of the primordial follicle pool is accompanied by a remarkable programmed oocyte loss for unclear reasons. Here, we identify a new role of ASH1-like histone lysine methyltransferase (ASH1L) in controlling the apoptosis of oocytes during meiotic prophase I in mice. Our results showed that overexpression of Ash1l led to a dramatic loss of fetal oocytes via apoptosis, which subsequently resulted in a reduced capacity of the primordial follicle pool. Overexpression of Ash1l also led to a deficiency in DNA double-strand break repair associated with premature upregulation of p63 and phosphorylated checkpoint kinase 2 (p-CHK2), the major genome guardian of the female germline, following Ash1l overexpression in fetal ovaries. In summary, ASH1L is one of the indispensable epigenetic molecules that acts as a guardian of the genome. It protects oocyte genome integrity and removes oocytes with serious DNA damage by regulating the expression of p63 and p-CHK2 during meiotic prophase I in mice. Our study provides a perspective on the physiological regulatory role of DNA damage checkpoint signaling in fetal oocyte guardianship and female fertility.
Insights
ASH1-like histone lysine methyltransferase (ASH1L) controls fetal oocyte apoptosis during meiosis. Overexpression of Ash1l reduces the primordial follicle pool, impacting female fertility.
Area of Science:
- Reproductive Biology
- Epigenetics
- Developmental Biology
Background:
- The primordial follicle pool size dictates female reproductive lifespan.
- Oocyte loss during fetal development is programmed but poorly understood.
Purpose of the Study:
- To investigate the role of ASH1-like histone lysine methyltransferase (ASH1L) in fetal oocyte apoptosis and primordial follicle pool establishment.
- To elucidate the mechanism by which ASH1L influences oocyte genome integrity.
Main Methods:
- Overexpression of Ash1l in fetal mouse ovaries.
- Assessment of oocyte apoptosis via TUNEL assay.
- Analysis of DNA double-strand break repair markers (e.g., p63, p-CHK2).
Main Results:
- Overexpression of Ash1l significantly increased fetal oocyte apoptosis.
- Reduced primordial follicle pool capacity was observed following Ash1l overexpression.
- Ash1l overexpression impaired DNA double-strand break repair and upregulated p63 and p-CHK2.
Conclusions:
- ASH1L acts as a crucial epigenetic regulator and genome guardian in fetal oocytes.
- ASH1L protects oocyte genome integrity by managing DNA damage response pathways.
- Dysregulation of ASH1L impacts oocyte quality and potentially female fertility.
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