Macrophage PIM1 Drives Atherosclerosis by Enhancing Foam Cell Formation Via CD36
Mirza Ahmar Beg, Quoc Quang Luu, Vaya Chen, Yaxin Wang, Gang Xin, Weiguo Cui, Roy L. Silverstein, Yiliang ChenBACKGROUND:
Atherosclerosis is characterized by the buildup of fatty plaques that thicken and stiffen arterial walls. Macrophages (Mφs) significantly contribute to this process through their scavenger receptor CD36. PIM1 is a serine/threonine kinase known to modulate immune responses and cell metabolism. However, its role in Mφ lipid handling and atherogenesis is not well defined. This study examines the role of PIM1 in regulating CD36 expression and function in Mφs during foam cell formation and atherosclerosis progression.
METHODS:
We performed in vitro studies by treating murine peritoneal Mφs from
RESULTS:
Deletion of
CONCLUSIONS:
PIM1 acts as a key upstream regulator of CD36 by enhancing PPARγ activity in Mφs. The PIM1-CD36 axis promotes oxLDL binding, uptake, and foam cell formation. Targeting the PIM1/PPARγ/CD36 pathway could offer new ways to modulate Mφ lipid metabolism and reduce atherosclerotic plaque progression.