|  Help  |  About  |  Contact Us

Publication : CAMKIIγ suppresses an efferocytosis pathway in macrophages and promotes atherosclerotic plaque necrosis.

First Author  Doran AC Year  2017
Journal  J Clin Invest Volume  127
Issue  11 Pages  4075-4089
PubMed ID  28972541 Mgi Jnum  J:252595
Mgi Id  MGI:6107748 Doi  10.1172/JCI94735
Citation  Doran AC, et al. (2017) CAMKIIgamma suppresses an efferocytosis pathway in macrophages and promotes atherosclerotic plaque necrosis. J Clin Invest 127(11):4075-4089
abstractText  Atherosclerosis is the underlying etiology of cardiovascular disease, the leading cause of death worldwide. Atherosclerosis is a heterogeneous disease in which only a small fraction of lesions lead to heart attack, stroke, or sudden cardiac death. A distinct type of plaque containing large necrotic cores with thin fibrous caps often precipitates these acute events. Here, we show that Ca2+/calmodulin-dependent protein kinase gamma (CaMKIIgamma) in macrophages plays a major role in the development of necrotic, thin-capped plaques. Macrophages in necrotic and symptomatic atherosclerotic plaques in humans as well as advanced atherosclerotic lesions in mice demonstrated activation of CaMKII. Western diet-fed LDL receptor-deficient (Ldlr-/-) mice with myeloid-specific deletion of CaMKII had smaller necrotic cores with concomitantly thicker collagen caps. These lesions demonstrated evidence of enhanced efferocytosis, which was associated with increased expression of the macrophage efferocytosis receptor MerTK. Mechanistic studies revealed that CaMKIIgamma-deficient macrophages and atherosclerotic lesions lacking myeloid CaMKIIgamma had increased expression of the transcription factor ATF6. We determined that ATF6 induces liver X receptor-alpha (LXRalpha), an Mertk-inducing transcription factor, and that increased MerTK expression and efferocytosis in CaMKIIgamma-deficient macrophages is dependent on LXRalpha. These findings identify a macrophage CaMKIIgamma/ATF6/LXRalpha/MerTK pathway as a key factor in the development of necrotic atherosclerotic plaques.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

4 Bio Entities

Trail: Publication

0 Expression