Loss of renal tubular G9a benefits acute kidney injury by lowering focal lipid accumulation via CES1
This work was supported by grants from the National Natural Science Foundation of China (32270727, 32000141), the Natural Science Foundation of Fujian Province (2021J01029) and the Fundamental Research Funds for the Central Universities (20720210094) to Y.C., grants from the Research Grants Council of Hong Kong (CRS_CUHK405/23, AoE/M-402/25-N, AoE/M-05/12, CUHK14106823, C4033-19E, C4002-20W, C4002-21EF, C2003-22WF, R4005-18, C4014-23G, G-CUHK409/23 and Senior Research Fellow Scheme SRFS2122-4S01), the Chinese University of Hong Kong (CUHK) Research Committee, and Science Faculty to L.J., as well as grants from the State Key Laboratory of Chemical Biology and Drug Discovery (PolyU), the Research Grants Council (RGC) (Hong Kong) (14105517) and the Hong Kong Polytechnic University (University Grants Committee) (P0046618) to W.C.Y.L
Manufactured by: Baxter Pharmaceuticals India Private Ltd Ahmedabad 382213, India Manufactured for: Baxter Healthcare Corporation Deerfield, IL 60015 USA Rev
FEMS Yeast Res 2:295305 Penninckx MJ, Elskens MT (1993) Metabolism and functions of glutathione in micro-organisms
What Is NAD+ and What Can It Offer