Epigenetic Drift of H3K27me3 in Aging Links Glycolysis to Healthy Longevity
Zaijun Ma(Chinese Academy of Sciences), Nan Liu(Shandong Provincial Hospital), Zheng‐Jiang Zhu(Shanghai University), Yaoyang Zhang(Chinese Academy of Sciences), Huanhuan Ma(Chinese Academy of Sciences), Kongyan Niu(Chinese Academy of Sciences), Zhandong Liu(Baylor College of Medicine), Wenhua Tong(Yibin University), Han Wang(Tsinghua University), Feng Liu(Central China Normal University), Rui Liu(Sichuan University), Hui Wang(Tibet Autonomous Region People's Hospital), Yun Yang(Zhejiang International Studies University), Yuping Cai(Guangxi Medical University), Xiaofen Wu(Chinese Academy of Sciences)
Cited by 3
Related Papers
A lipidome atlas in MS-DIAL 4
|Nature Biotechnology|2020|901
Epigenomic Profiling of Young and Aged HSCs Reveals Concerted Changes during Aging that Reinforce Self-Renewal
|Cell stem cell|2014|703
Optimal stomatal behaviour around the world
|Nature Climate Change|2015|633
Dnmt3a regulates emotional behavior and spine plasticity in the nucleus accumbens
|Nature Neuroscience|2010|616