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Cell Death & Disease|February 17, 2019
Oocyte-derived E-cadherin acts as a multiple functional factor maintaining the primordial follicle pool in miceHao Yan, Jia Wen, Tuo Zhang, et al.American Journal of Physiology. Cell Physiology|November 7, 2024
p300 maintains primordial follicle activation by repressing <i>VEGFA</i> transcriptionMeina He, Yaoyun Liang, Xiaoran Nie, et al.Aging Cell|September 19, 2024
Oocytes maintain low ROS levels to support the dormancy of primordial folliclesShaogang Qin, Xinyue Chi, Zijian Zhu, et al.FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|November 7, 2019
SIRT1 facilitates primordial follicle recruitment independent of deacetylase activity through directly modulating <i>Akt1</i> and <i>mTOR</i> transcriptionTuo Zhang, Xinhua Du, Lihua Zhao, et al.Science Bulletin|February 1, 2024
LSD1 promotes the FSH responsive follicle formation by regulating autophagy and repressing Wt1 in the granulosa cellsZijian Zhu, Meina He, Tuo Zhang, et al.Advanced Materials (Deerfield Beach, Fla.)|May 2, 2024
Black Phosphorus Nanosheets Protect Neurons by Degrading Aggregative α-syn and Clearing ROS in Parkinson's DiseaseMeina He, Xiangming Zhang, Xia Ran, et al.Aging Cell|February 20, 2020
LSD1 contributes to programmed oocyte death by regulating the transcription of autophagy adaptor SQSTM1/p62Meina He, Tuo Zhang, Zijian Zhu, et al.Cellular and Molecular Life Sciences : CMLS|May 19, 2024
P62 promotes FSH-induced antral follicle formation by directing degradation of ubiquitinated WT1Ting Zhao, Meina He, Zijian Zhu, et al.Journal of Molecular Cell Biology|July 9, 2019
SP1 governs primordial folliculogenesis by regulating pregranulosa cell development in miceHan Cai, Bingying Liu, Huarong Wang, et al.Theranostics|April 22, 2024
HDAC6-dependent deacetylation of NGF dictates its ubiquitination and maintains primordial follicle dormancyTuo Zhang, Yuntong Tong, Rengguang Zhu, et al.Pageof 4