Myeloid GPSM1 regulates atherosclerosis progression by governing monocyte and macrophage activation and chemotaxis

炎症 促炎细胞因子 细胞生物学 巨噬细胞 单核细胞 趋化性 调节器 化学 癌症研究 渗透(HVAC) 髓样 封锁 信号转导 四氯化碳 免疫学 MAPK/ERK通路 下调和上调 功能(生物学) 泡沫电池 脂质信号 传出细胞增多 医学 髓系细胞
作者
Yue-Mei Zhang,Yuxin Cao,Yongxin Sun,Chenxia Zhou,Xiaorui Lyu,Daixi Wang,Jiangfei Zheng,Yuxin Shu,Lijun Yao,Rong Zhang,Jingyong Li,Feng Jiang,Xiang Cheng,Jing Yan,Cheng Hu,Yue-Mei Zhang,Yuxin Cao,Yongxin Sun,Chenxia Zhou,Xiaorui Lyu
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:122 (48)
标识
DOI:10.1073/pnas.2517531122
摘要

The activation of blood monocytes and the infiltration of monocyte-derived macrophages into the vessel walls are the central part of atherosclerosis. However, the mechanisms underlying the processes remain unclear. Here, we report that G-protein signaling modulator 1 (GPSM1) plays a critical role in atherogenesis. We found that GPSM1 expression in lesional macrophages was increased during atherosclerosis development both in mice and humans. Myeloid-specific GPSM1 ablation protects mice against atherosclerosis and reduces aortic inflammation in both Apoe −/− mice and an AAV-PCSK9 injection model. Conversely, myeloid-restricted overexpression of GPSM1 accelerates aortic inflammation and promotes atherosclerosis development in mice. Mechanistically, GPSM1 deficiency suppressed monocyte activation including chemotaxis and adhesion through inhibition of the p38/ERK MAPK pathway regulated by the cAMP/PKA/KLF4/PMP22 axis, thereby alleviating proinflammatory responses within atherosclerotic plaques. Blockade of PMP22 using siRNA-loaded liposomes protected GPSM1 overexpression mice from atherosclerosis. Furthermore, a small-molecule compound inhibiting GPSM1 function could suppress atherosclerosis in vivo. In conclusion, our findings establish that GPSM1 is a regulator of atherosclerosis development and targeting GPSM1 might be a promising therapy against atherosclerosis.
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