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Experimental Cell Research|November 1, 2020
The clock regulator Bmal1 protects against muscular dystrophyHongbo Gao, Xuekai Xiong, Yayu Lin, et al.Experimental Cell Research|August 8, 2021
Inhibition of Rev-erbα ameliorates muscular dystrophyXuekai Xiong, Hongbo Gao, Yayu Lin, et al.FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|March 27, 2020
Metabolic-sensing of the skeletal muscle clock coordinates fuel oxidationHongshan Yin, Weini Li, Somik Chatterjee, et al.F1000Research|August 20, 2016
Circadian clock regulation of skeletal muscle growth and repairSomik Chatterjee, Ke MaMolecular and Cellular Endocrinology|December 7, 2020
Chronic circadian shift leads to adipose tissue inflammation and fibrosisXuekai Xiong, Yayu Lin, Jeongkyung Lee, et al.Methods in Molecular Biology (Clifton, N.J.)|March 30, 2023
Methods to Monitor Circadian Clock Function in Skeletal MuscleXuekai Xiong, Ke MaExperimental Cell Research|September 15, 2014
Brain and muscle Arnt-like 1 promotes skeletal muscle regeneration through satellite cell expansionSomik Chatterjee, Hongshan Yin, Deokhwa Nam, et al.Molecular and Cellular Biology|September 19, 2023
Transcription Repression of CRY2 via PER2 Interaction Promotes AdipogenesisWeini Li, Xuekai Xiong, Tali Kiperman, et al.Biorxiv : the Preprint Server for Biology|March 30, 2023
Transcription repression of Cry2 via Per2 interaction promotes adipogenesisWeini Li, Xuekai Xiong, Tali Kiperman, et al.Scientific Reports|March 16, 2019
The Nuclear Receptor and Clock Repressor Rev-erbα Suppresses MyogenesisSomik Chatterjee, Hongshan Yin, Weini Li, et al.Pageof 136