Cellular communication network factor 2 regulates smooth muscle cell transdifferentiation and lipid accumulation in atherosclerosis

转分化 细胞生物学 生物 泡沫电池 PDGFB公司 血管平滑肌 基质细胞蛋白 免疫学 生长因子 干细胞 内分泌学 细胞外基质 脂蛋白 胆固醇 遗传学 血小板源性生长因子受体 平滑肌 受体
作者
Qian Xu,Jisheng Sun,Claire M Holden,Hildebrando Candido Ferreira Neto,Ti Wang,Chiyuan Zhang,Zuli Fu,Giji Joseph,Ruizheng Shi,Jinhu Wang,Andrew Leask,W. Robert Taylor,Zhiyong Lin
出处
期刊:Cardiovascular Research [Oxford University Press]
被引量:1
标识
DOI:10.1093/cvr/cvae215
摘要

Abstract Aims Accruing evidence illustrates an emerging paradigm of dynamic vascular smooth muscle cell (SMC) transdifferentiation during atherosclerosis progression. However, the molecular regulators that govern SMC phenotype diversification remain poorly defined. This study aims to elucidate the functional role and underlying mechanisms of cellular communication network factor 2 (CCN2), a matricellular protein, in regulating SMC plasticity in the context of atherosclerosis. Methods and results In both human and murine atherosclerosis, an up-regulation of CCN2 is observed in transdifferentiated SMCs. Using an inducible murine SMC CCN2 deletion model, we demonstrate that SMC-specific CCN2 knockout mice are hypersusceptible to atherosclerosis development as evidenced by a profound increase in lipid-rich plaques along the entire aorta. Single-cell RNA sequencing studies reveal that SMC deficiency of CCN2 positively regulates machinery involved in endoplasmic reticulum stress, endocytosis, and lipid accumulation in transdifferentiated macrophage-like SMCs during the progression of atherosclerosis, findings recapitulated in CCN2-deficient human aortic SMCs. Conclusion Our studies illuminate an unanticipated protective role of SMC-CCN2 against atherosclerosis. Disruption of vascular wall homeostasis resulting from vascular SMC CCN2 deficiency predisposes mice to atherosclerosis development and progression.
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