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Regulation of paternal 5mC oxidation and H3K9me2 asymmetry by ERK1/2 in mouse zygotes

Cell Biosci. 2022-03; 
Baobao Chen, Mingtian Deng, Meng-Hao Pan, Shao-Chen Sun, Honglin Liu
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Proteins, Expression, Isolation and Analysis … , China) and then denatured on a PCR instrument at 100 C for 10 min. Proteins were separated by SDS-PAGE (GenScript) at 130 V for 60 min and then electrophoretically transferred to … Get A Quote

摘要

background: Extracellular-signal-regulated kinase (ERK) direct cell fate determination during the early development. The intricate interaction between the deposition of H3K9me2, de novo 5mC, and its oxides affects the remodeling of zygotic epigenetic modification. However, the role of fertilization-dependent ERK in the first cell cycle during zygotic reprogramming remains elusive. methods: In the present study, we used the small molecule inhibitor to construct the rapid ERK1/2 inactivation system in early zygotes in mice. The pronuclear H3K9me2 deposition assay and the pre-implantation embryonic development ability were assessed to investigate the effect of fertilization-dependent ERK1/2 on zygotic reprogrammin... More

關鍵詞

5mC, ERK1/2, H3K9me2, Paternal pronucleus, Zygotic reprogramming
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