Showing results (1-10 of 1,384) with videos related to
Sort By:
Pageof 139
Biochimica Et Biophysica Acta. Gene Regulatory Mechanisms|November 5, 2018
m<sup>6</sup>A mRNA modification regulates mammalian spermatogenesisZhen Lin, Ming-Han TongDevelopment (Cambridge, England)|March 21, 2024
A Rad50-null mutation in mouse germ cells causes reduced DSB formation, abnormal DSB end resection and complete loss of germ cellsYuefang Liu, Zhen Lin, Junyi Yan, et al.Methods in Molecular Biology (Clifton, N.J.)|August 10, 2024
Isolation of Homogeneous Sub-populations of Spermatocytes from Mouse TestisYao Chen, Zhen Lin, Xi Zhang, et al.Trends in Biochemical Sciences|March 18, 2026
Mechanism and regulation of meiotic double-strand break formation in mammalsXinzhe Tang, Ming-Han TongStem Cell Reports|October 14, 2020
WTAP Function in Sertoli Cells Is Essential for Sustaining the Spermatogonial Stem Cell NicheGong-Xue Jia, Zhen Lin, Rong-Ge Yan, et al.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.Cell Research|March 3, 2025
SETD1B-mediated broad H3K4me3 controls proper temporal patterns of gene expression critical for spermatid developmentZhen Lin, Bowen Rong, Ruitu Lyu, et al.Development (Cambridge, England)|February 24, 2025
The KMT2 complex protein ASH2L is required for meiotic prophase progression but dispensable for mitosis in differentiated spermatogoniaZhen Lin, Bowen Rong, Meixia Wu, et al.Cell Research|February 13, 2020
Refined spatial temporal epigenomic profiling reveals intrinsic connection between PRDM9-mediated H3K4me3 and the fate of double-stranded breaksYao Chen, Ruitu Lyu, Bowen Rong, et al.Nature Communications|March 18, 2025
The nuclear exosome co-factor MTR4 shapes the transcriptome for meiotic initiationLi Zhang, Jianshu Wang, Zhidong Tang, et al.Pageof 139