Department of Biochemistry, Cardiovascular Research Institute Maastricht CARIM, Maastricht University, the Netherlands (M.F., R.v.G., L.J.S.).
BHF Centre of Research Excellence, School of Cardiovascular Medicine and Sciences, James Black Centre, King's College London, United Kingdom (M.F., M.W., S.A., J.B., A.K., C.M.S.).
Arterioscler Thromb Vasc Biol. 2021 Feb;41(2):898-914. doi: 10.1161/ATVBAHA.120.315506. Epub 2020 Dec 10.
Vascular calcification is common among aging populations and mediated by vascular smooth muscle cells (VSMCs). The endoplasmic reticulum (ER) is involved in protein folding and ER stress has been implicated in bone mineralization. The role of ER stress in VSMC-mediated calcification is less clear. Approach and Results: mRNA expression of the ER stress markers PERK (PKR (protein kinase RNA)-like ER kinase), ATF (activating transcription factor) 4, ATF6, and Grp78 (glucose-regulated protein, 78 kDa) was detectable in human vessels with levels of PERK decreased in calcified plaques compared to healthy vessels. Protein deposition of Grp78/Grp94 was increased in the matrix of calcified arteries. Induction of ER stress accelerated human primary VSMC-mediated calcification, elevated expression of some osteogenic markers (Runx2 [RUNX family transcription factor 2], OSX [Osterix], ALP [alkaline phosphatse], BSP [bone sialoprotein], and OPG [osteoprotegerin]), and decreased expression of SMC markers. ER stress potentiated extracellular vesicle (EV) release via SMPD3 (sphingomyelin phosphodiesterase 3). EVs from ER stress-treated VSMCs showed increased Grp78 levels and calcification. Electron microscopy confirmed the presence of Grp78/Grp94 in EVs. siRNA (short interfering RNA) knock-down of Grp78 decreased calcification. Warfarin-induced Grp78 and ATF4 expression in rat aortas and VSMCs and increased calcification in an ER stress-dependent manner via increased EV release.
ER stress induces vascular calcification by increasing release of Grp78-loaded EVs. Our results reveal a novel mechanism of action of warfarin, involving increased EV release via the PERK-ATF4 pathway, contributing to calcification. This study is the first to show that warfarin induces ER stress and to link ER stress to cargo loading of EVs.
血管钙化在老年人群中很常见,由血管平滑肌细胞(VSMCs)介导。内质网(ER)参与蛋白质折叠,而 ER 应激与骨矿化有关。ER 应激在 VSMC 介导的钙化中的作用尚不清楚。方法和结果:在人血管中可检测到 ER 应激标志物 PERK(PKR(蛋白激酶 RNA)样 ER 激酶)、ATF(激活转录因子)4、ATF6 和 Grp78(葡萄糖调节蛋白,78 kDa)的 mRNA 表达,与健康血管相比,钙化斑块中 PERK 的水平降低。在钙化动脉基质中,Grp78/Grp94 的蛋白沉积增加。ER 应激诱导加速了人原发性 VSMC 介导的钙化,一些成骨标志物(Runx2[RUNX 家族转录因子 2]、OSX[Osterix]、ALP[碱性磷酸酶]、BSP[骨涎蛋白]和 OPG[骨保护素])的表达升高,而 SMC 标志物的表达降低。ER 应激通过 SMPD3(鞘磷脂磷酸二酯酶 3)增强细胞外囊泡(EV)的释放。来自 ER 应激处理的 VSMCs 的 EV 显示出增加的 Grp78 水平和钙化。电子显微镜证实 EV 中存在 Grp78/Grp94。Grp78 的 siRNA(短发夹 RNA)敲低减少了钙化。华法林诱导大鼠主动脉和 VSMCs 中的 Grp78 和 ATF4 表达,并通过增加 EV 释放以 ER 应激依赖的方式增加钙化。
ER 应激通过增加 Grp78 负载的 EV 的释放诱导血管钙化。我们的结果揭示了华法林的一种新作用机制,涉及通过 PERK-ATF4 途径增加 EV 释放,从而促进钙化。这项研究首次表明华法林诱导 ER 应激,并将 ER 应激与 EV 的货物装载联系起来。