Ceneri Nicolle, Zhao Lina, Young Bryan D, Healy Abigail, Coskun Suleyman, Vasavada Hema, Yarovinsky Timur O, Ike Kenneth, Pardi Ruggero, Qin Lingfen, Qin Li, Tellides George, Hirschi Karen, Meadows Judith, Soufer Robert, Chun Hyung J, Sadeghi Mehran M, Bender Jeffrey R, Morrison Alan R
From the Department of Internal Medicine (Section of Cardiovascular Medicine), VA Connecticut Healthcare System, West Haven (N.C., L.Z., A.H., L.Q., G.T., J.M., R.S., M.M.S., A.R.M.); Department of Medicine and Division of Cardiology, Providence VA Medical Center, RI (A.H., A.R.M.); Department of Internal Medicine (Section of Cardiovascular Medicine), Yale Cardiovascular Research Center, Yale University School of Medicine, New Haven, CT (N.C., L.Z., B.D.Y., A.H., S.C., H.V., T.O.Y., K.I., L.Q., L.Q., G.T., K.H., J.M., R.S., H.J.C., M.M.S., J.R.B, A.R.M.); Department of Internal Medicine (Section of Cardiovascular Medicine), Alpert Medical School at Brown University, Providence, RI (A.H., A.R.M.); and Department of Molecular Pathology, Universita Vita Salute School of Medicine, San Raffaele Scientific Institute, Milan, Italy (R.P.).
Arterioscler Thromb Vasc Biol. 2017 Feb;37(2):328-340. doi: 10.1161/ATVBAHA.116.308507. Epub 2016 Nov 10.
OBJECTIVE: The calcium composition of atherosclerotic plaque is thought to be associated with increased risk for cardiovascular events, but whether plaque calcium itself is predictive of worsening clinical outcomes remains highly controversial. Inflammation is likely a key mediator of vascular calcification, but immune signaling mechanisms that promote this process are minimally understood. APPROACH AND RESULTS: Here, we identify Rac2 as a major inflammatory regulator of signaling that directs plaque osteogenesis. In experimental atherogenesis, Rac2 prevented progressive calcification through its suppression of Rac1-dependent macrophage interleukin-1β (IL-1β) expression, which in turn is a key driver of vascular smooth muscle cell calcium deposition by its ability to promote osteogenic transcriptional programs. Calcified coronary arteries from patients revealed decreased Rac2 expression but increased IL-1β expression, and high coronary calcium burden in patients with coronary artery disease was associated with significantly increased serum IL-1β levels. Moreover, we found that elevated IL-1β was an independent predictor of cardiovascular death in those subjects with high coronary calcium burden. CONCLUSIONS: Overall, these studies identify a novel Rac2-mediated regulation of macrophage IL-1β expression, which has the potential to serve as a powerful biomarker and therapeutic target for atherosclerosis.
目的:动脉粥样硬化斑块的钙成分被认为与心血管事件风险增加有关,但斑块钙本身是否能预测临床结局恶化仍存在高度争议。炎症可能是血管钙化的关键介质,但促进这一过程的免疫信号机制却知之甚少。 方法与结果:在此,我们确定Rac2是指导斑块骨生成的信号传导的主要炎症调节因子。在实验性动脉粥样硬化形成过程中,Rac2通过抑制Rac1依赖性巨噬细胞白细胞介素-1β(IL-1β)表达来预防进行性钙化,而IL-1β反过来又通过促进成骨转录程序的能力成为血管平滑肌细胞钙沉积的关键驱动因素。患者的钙化冠状动脉显示Rac2表达降低但IL-1β表达增加,冠状动脉疾病患者的高冠状动脉钙负荷与血清IL-1β水平显著升高相关。此外,我们发现IL-1β升高是那些冠状动脉钙负荷高的受试者心血管死亡的独立预测因子。 结论:总体而言,这些研究确定了一种新的Rac2介导的巨噬细胞IL-1β表达调节机制,它有可能成为动脉粥样硬化的有力生物标志物和治疗靶点。
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