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Biochemical and Biophysical Research Communications|January 22, 2013
Mitochondrial metabolism transition cooperates with nuclear reprogramming during induced pluripotent stem cell generationWenbo Liu, Qi Long, Keshi Chen, et al.Autophagy|June 26, 2019
Topology-dependent, bifurcated mitochondrial quality control under starvationYanshuang Zhou, Qi Long, Hao Wu, et al.Cell Metabolism|November 10, 2015
Transient Activation of Mitoflashes Modulates Nanog at the Early Phase of Somatic Cell ReprogrammingZhongfu Ying, Keshi Chen, Lingjun Zheng, et al.Cell Death and Differentiation|May 25, 2022
Plin2-mediated lipid droplet mobilization accelerates exit from pluripotency by lipidomic remodeling and histone acetylationYi Wu, Keshi Chen, Linpeng Li, et al.Nature Communications|November 26, 2025
Microprotein PLUM encoded by Lin28b uORF is a cytoplasmic determinant of pluripotency and embryonic developmentZhihong Hao, Yi Wu, Yile Huang, et al.Cell Death and Differentiation|November 24, 2021
MAP2K6 remodels chromatin and facilitates reprogramming by activating Gatad2b-phosphorylation dependent heterochromatin looseningGuangsuo Xing, Zichao Liu, Luyuan Huang, et al.Cell Metabolism|September 4, 2018
Short-Term Mitochondrial Permeability Transition Pore Opening Modulates Histone Lysine Methylation at the Early Phase of Somatic Cell ReprogrammingZhongfu Ying, Ge Xiang, Lingjun Zheng, et al.Nature Metabolism|October 9, 2020
Author Correction: Glis1 facilitates induction of pluripotency via an epigenome-metabolome-epigenome signalling cascadeLinpeng Li, Keshi Chen, Tianyu Wang, et al.Nature Metabolism|August 26, 2020
Glis1 facilitates induction of pluripotency via an epigenome-metabolome-epigenome signalling cascadeLinpeng Li, Keshi Chen, Tianyu Wang, et al.Autophagy|July 20, 2017
BNIP3L-dependent mitophagy accounts for mitochondrial clearance during 3 factors-induced somatic cell reprogrammingGe Xiang, Liang Yang, Qi Long, et al.Pageof 3