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Development (Cambridge, England)|February 26, 2020
CXXC finger protein 1-mediated histone H3 lysine-4 trimethylation is essential for proper meiotic crossover formation in miceYu Jiang, Hui-Ying Zhang, Zhen Lin, et al.Science Advances|October 28, 2022
PABPN1 functions as a hub in the assembly of nuclear poly(A) domains that are essential for mouse oocyte developmentXing-Xing Dai, Shuai-Bo Pi, Long-Wen Zhao, et al.Nature Communications|August 30, 2018
CFP1 coordinates histone H3 lysine-4 trimethylation and meiotic cell cycle progression in mouse oocytesQian-Qian Sha, Xing-Xing Dai, Jun-Chao Jiang, et al.Cell Death & Disease|November 20, 2018
Loss of oocyte Rps26 in mice arrests oocyte growth and causes premature ovarian failureXiao-Man Liu, Ming-Qi Yan, Shu-Yan Ji, et al.Cell Reports|November 17, 2021
CNOT6/6L-mediated mRNA degradation in ovarian granulosa cells is a key mechanism of gonadotropin-triggered follicle developmentXing-Xing Dai, Zhi-Yan Jiang, Yun-Wen Wu, et al.Nature Communications|June 10, 2022
Dynamic mRNA degradome analyses indicate a role of histone H3K4 trimethylation in association with meiosis-coupled mRNA decay in oocyte agingYun-Wen Wu, Sen Li, Wei Zheng, et al.Nucleic Acids Research|February 23, 2021
Role of CxxC-finger protein 1 in establishing mouse oocyte epigenetic landscapesQian-Qian Sha, Ye-Zhang Zhu, Yunlong Xiang, et al.Nucleic Acids Research|April 30, 2025
RNA G-quadruplex removal promotes a translational switch after meiosis resumptionQiong-Wen Lu, Shao-Yuan Liu, Xiu-Quan Liao, et al.Molecular Human Reproduction|April 17, 2023
A long-acting recombinant FSH supports high-quality mouse follicle development and oocyte maturation in vitro by coordinating somatic and germ cell transcriptomesShao-Yuan Liu, Yan-Chu Li, Xin-Yi Tian, et al.Science Advances|February 21, 2025
NAT10-mediated mRNA N4-acetylation is essential for the translational regulation during oocyte meiotic maturation in miceLu Chen, Wen-Jing Wang, Shao-Yuan Liu, et al.Pageof 4