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PMID: 41757504 已发表 · ppublish 英语

Replication protein A1 is essential for DNA damage repair during mammalian oogenesis.

Biology of reproduction ·第 114 卷 ·第 5 期 ·2026-05-13

Miao X, Guo R, Williams A, Wong K, Rivard V, Lee C, Ma J, Wang PJ, Cui W

摘要

Persistence of unrepaired DNA damage in oocytes is detrimental and may cause genetic aberrations, miscarriage, and infertility. RPA, a single-stranded DNA-binding complex, is essential for various DNA-related processes. Here, we report that RPA plays a novel role in DNA damage repair during postnatal oocyte development after meiotic recombination. To investigate the role of RPA during oogenesis, we inactivated RPA1 (replication protein A1), the largest subunit of the heterotrimeric RPA complex, specifically in oocytes using two germline-specific Cre drivers (Ddx4-Cre and Zp3-Cre). We find that depletion of RPA1 leads to the disassembly of the RPA complex, as evidenced by the absence of RPA2 and RPA3 in RPA1-deficient oocytes. Strikingly, severe DNA damage occurs in RPA1-deficient germinal vesicle-stage oocytes. Loss of RPA in oocytes triggered the canonical DNA damage response mechanisms and pathways, such as activation of ATM, ATR, DNA-PK, and p53. In addition, the RPA deficiency causes chromosome misalignment at metaphase I and metaphase II stages of oocytes, which is consistent with altered transcript levels of genes involved in cytoskeleton organization in RPA1-deficient oocytes. Absence of the RPA complex in oocytes severely impairs folliculogenesis and leads to a significant reduction in oocyte number and female infertility. Our results demonstrate that RPA plays a previously unrecognized role in DNA damage repair during mammalian folliculogenesis.

关键词
DNA damage chromosome alignment female fertility folliculogenesis oocyte-specific conditional knockout
文献信息
期刊
Biology of reproduction
期刊简称
Biol Reprod
ISSN
1529-7268
发表日期
2026-05-13
语言
英语
国家/地区
United States
NLM ID
0207224
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