Macrophage NFATc3 prevents foam cell formation and atherosclerosis: evidence and mechanisms
European Heart Journal

Abstract
Our previous study demonstrated that Ca2+ influx through the Orai1 store-operated Ca2+ channel in macrophages contributes to foam cell formation and atherosclerosis via the calcineurin–ASK1 pathway, not the classical calcineurin–nuclear factor of activated T-cell (NFAT) pathway. Moreover, up-regulation of NFATc3 in macrophages inhibits foam cell formation, suggesting that macrophage NFATc3 is a negative regulator of atherogenesis. Hence, this study investigated the precise role of macrophage NFATc3 in atherogenesis.
Macrophage-specific NFATc3 knockout mice were generated to determine the effect of NFATc3 on atherosclerosis in a mouse model of adeno-associated virus-mutant
Macrophage NFATc3 up-regulates miR-204 to reduce SR-A and CD36 levels, thereby preventing foam cell formation and atherosclerosis, indicating that the NFATc3/miR-204 axis may be a potential therapeutic target against atherosclerosis.
Contributors

Xiu Liu
Author

Jia-Wei Guo
Author

Xiao-Chun Lin
Author

Yong-Hua Tuo
Author

Wan-Li Peng
Author

Su-Yue He
Author

Zhao-Qiang Li
Author

Yan-Chen Ye
Author

Jie Yu
Author

Fei-Ran Zhang
Author

Ming-Ming Ma
Author

Jin-Yan Shang
Author

Xiao-Fei Lv
Author

An-Dong Zhou
Author

Ying Ouyang
Author

Cheng Wang
Author

Rui-Ping Pang
Author

Jian-Xin Sun
Author

Jing-Song Ou
Author

Jia-Guo Zhou
Author
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