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首页> 外文期刊>Cell death & disease. >Loss of PARP-1 attenuates diabetic arteriosclerotic calcification via Stat1/Runx2 axis
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Loss of PARP-1 attenuates diabetic arteriosclerotic calcification via Stat1/Runx2 axis

机译:PARP-1的损失通过Stat1 / RUNX2轴衰减糖尿病动脉硬化钙化

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摘要

Accelerated atherosclerotic calcification is responsible for plaque burden, especially in diabetes. The regulatory mechanism for atherosclerotic calcification in diabetes is poorly characterized. Here we show that deletion of PARP-1, a main enzyme in diverse metabolic complications, attenuates diabetic atherosclerotic calcification and decreases vessel stiffening in mice through Runx2 suppression. Specifically, PARP-1 deficiency reduces diabetic arteriosclerotic calcification by regulating Stat1-mediated synthetic phenotype switching of vascular smooth muscle cells and macrophage polarization. Meanwhile, both vascular smooth muscle cells and macrophages manifested osteogenic differentiation in osteogenic media, which was attenuated by PARP-1/Stat1 inhibition. Notably, Stat1 acts as a positive transcription factor by directly binding to the promoter of Runx2 and promoting atherosclerotic calcification in diabetes. Our results identify a new function of PARP-1, in which metabolism disturbance-related stimuli activate the Runx2 expression mediated by Stat1 transcription to facilitate diabetic arteriosclerotic calcification. PARP-1 inhibition may therefore represent a useful therapy for this challenging complication.
机译:加速的动脉粥样硬化钙化是牙菌斑负担的原因,特别是在糖尿病中。糖尿病中动脉粥样硬化钙化的调节机制表征不佳。在这里,我们显示PARP-1的缺失,一种多种代谢并发症的主要酶,通过RUNX2抑制减轻糖尿病动脉粥样硬化钙化并降低小鼠中的容器加固。具体而言,PARP-1缺乏通过调节血管平滑肌细胞和巨噬细胞极化的STAT1介导的合成表型切换来减少糖尿病动脉硬化钙化。同时,血管平滑肌细胞和巨噬细胞表现出骨质发生介质中的成骨分化,其通过PARP-1 / Stat1抑制衰减。值得注意的是,STAT1通过直接结合Runx2的启动子并促进糖尿病中的动脉粥样硬化钙化来充当阳性转录因子。我们的结果鉴定了PARP-1的新功能,其中新陈代谢扰动相关的刺激激活由Stat1转录介导的RUNX2表达,以促进糖尿病动脉硬化钙化。因此,PARP-1抑制可以代表这种挑战性并发症的有用疗法。

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