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Laminar flow inhibits the Hippo/YAP pathway via autophagy and SIRT1-mediated deacetylation against atherosclerosis

机译:层流量通过自噬和SIRT1介导的脱乙酰致针对动脉粥样硬化来抑制河马/ yap途径

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Atherosclerosis is a multifactorial disease of the vasculature, and shear stress is a crucial regulator of its process. Disturbed flow promotes atherosclerotic effects, while laminar flow has a protective action on the endothelium. Hippo/YAP is a major cascade that senses various mechanical cues and mediates the expression of pro-inflammatory genes. However, the mechanism modulating the transcription factor YAP in response to different patterns of blood flow remains unclear. In this study, we provide evidence that shear stress modulates YAP activity via autophagy in endothelial cells. Laminar flow promoted the expression of the autophagic markers BECLIN 1 and LC3II/LC3I. Autophagy blockade using a chemical inhibitor repressed YAP degradation under laminar flow. Conversely, the induction of autophagy under disturbed flow partially antagonized the nuclear import and transcriptional activation of YAP. In parallel, laminar flow led to the increased expression of SIRT1 protein, a NAD -dependent deacetylase. Further investigation showed that SIRT1-mediated YAP deacetylation. The forced expression of SIRT1 under disturbed flow effectively attenuated YAP activation and nuclear accumulation, thereby downregulating the expression of proinflammatory genes. In atheroprone vessels of mice receiving rapamycin to induce autophagy, the enhanced expression of SIRT1 was observed together with YAP repression. Altogether, these results show that endothelial autophagy and SIRT1 expression induced by laminar flow contribute to the inhibition of Hippo/YAP signaling and interrupt atherosclerotic plaque formation.
机译:动脉粥样硬化是脉管系统的多因素疾病,并且剪切应力是其过程的关键调节因素。干扰促进动脉粥样硬化作用,而层状流动对内皮有保护作用。 Hippo / Yap是一个主要的级联,感测各种机械提示并介导促炎基因的表达。然而,调节转录因子Yap响应于不同血流模式的机制仍不清楚。在这项研究中,我们提供了剪切应力通过内皮细胞中的自噬调制yap活性的证据。层流程促进了自噬标志物BEC1和LC3II / LC3I的表达。使用化学抑制剂在层流下的抑制yap劣化的自噬阻滞。相反,在干扰流动下的自噬诱导部分地拮抗了YAP的核进口和转录激活。平行地,层流导致SIRT1蛋白的表达增加,NAD依赖性脱乙酰酶。进一步的研究表明,SIRT1介导的YAP脱乙酰化。在干扰的流动下的SIRT1强迫表达有效地减弱了yap活化和核积累,从而下调了促炎基因的表达。在接受雷帕霉素的小鼠的磨牙血管中诱导自噬,与yap抑制一起观察到SIRT1的增强表达。总共,这些结果表明,层流动诱导的内皮自噬和SIRT1表达有助于抑制河马/ YAP信号和中断动脉粥样硬化斑块的形成。

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