Auto-suppression of Tet dioxygenases protects the mouse oocyte genome from oxidative demethylation
Xiaojie Zhang(Qingdao University of Science and Technology), Yarui Du(Chinese Academy of Sciences), Ziyang Jin(Sichuan University of Science and Engineering), Weiyi Lai(Sun Yat-sen University), Chan Gu(University of South Florida), Ting Liu(ShanghaiTech University), Colum P. Walsh(Linköping University), Zhi-Mei Xu(Center for Excellence in Molecular Cell Science), Yin Wang(Shanxi Provincial Children's Hospital), Binbin Han, Fan Guo(Sichuan University), Juan Gao, Hailin Wang(Fujian Normal University), Chao-Han Wang(Center for Excellence in Molecular Cell Science), Zhenyu Shao(Qilu Hospital of Shandong University), Rui Yan(Fuzhou University), Fengjuan Zhang(Center for Excellence in Molecular Cell Science), Guoliang Xu(Chinese Academy of Sciences)
Cited by 17
Related Papers
TSC2 Integrates Wnt and Energy Signals via a Coordinated Phosphorylation by AMPK and GSK3 to Regulate Cell Growth
|Cell|2006|1.4k
Single-Cell RNA-Seq Analysis Maps Development of Human Germline Cells and Gonadal Niche Interactions
|Cell stem cell|2017|616
Potential role of biochars in decreasing soil acidification - A critical review
|The Science of The Total Environment|2017|607
m6A RNA Methylation Is Regulated by MicroRNAs and Promotes Reprogramming to Pluripotency
|Cell stem cell|2015|553