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首页> 外文期刊>Circulation research: a journal of the American Heart Association >Notch signaling regulates platelet-derived growth factor receptor-beta expression in vascular smooth muscle cells.
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Notch signaling regulates platelet-derived growth factor receptor-beta expression in vascular smooth muscle cells.

机译:Notch信号调节血管平滑肌细胞中血小板衍生的生长因子受体-β的表达。

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摘要

Notch signaling is critically important for proper architecture of the vascular system, and mutations in NOTCH3 are associated with CADASIL, a stroke and dementia syndrome with vascular smooth muscle cell (VSMC) dysfunction. In this report, we link Notch signaling to platelet-derived growth factor (PDGF) signaling, a key determinant of VSMC biology, and show that PDGF receptor (PDGFR)-beta is a novel immediate Notch target gene. PDGFR-beta expression was upregulated by Notch ligand induction or by activated forms of the Notch receptor. Moreover, upregulation of PDGFR-beta expression in response to Notch activation critically required the Notch signal integrator CSL. In primary VSMCs, PDGFR-beta expression was robustly upregulated by Notch signaling, leading to an augmented intracellular response to PDGF stimulation. In newborn Notch3-deficient mice, PDGFR-beta expression was strongly reduced in the VSMCs that later develop an aberrant morphology. In keeping with this, PDGFR-beta upregulation in response to Notch activation was reduced also in Notch3-deficient embryonic stem cells. Finally, in VSMCs from a CADASIL patient carrying a NOTCH3 missense mutation, upregulation of PDGFR-beta mRNA and protein in response to ligand-induced Notch activation was significantly reduced. In sum, these data reveal a hierarchy for 2 important signaling systems, Notch and PDGF, in the vasculature and provide insights into how dysregulated Notch signaling perturbs VSMC differentiation and function.
机译:Notch信号对于血管系统的正确结构至关重要,而NOTCH3的突变与CADASIL,伴有血管平滑肌细胞(VSMC)功能障碍的中风和痴呆综合征相关。在此报告中,我们将Notch信号与血小板衍生的生长因子(PDGF)信号(VSMC生物学的关键决定因素)相关联,并显示PDGF受体(PDGFR)-beta是一种新型的即时Notch靶基因。 PDGFR-β表达被Notch配体诱导或Notch受体的活化形式上调。而且,响应于Notch激活,PDGFR-β表达的上调至关重要地需要Notch信号整合子CSL。在原发性VSMC中,PDGFR-β表达被Notch信号强烈上调,导致对PDGF刺激的细胞内反应增强。在新生的缺刻缺3小鼠中,PDGFR-β表达在VSMC中强烈降低,后来又出现异常形态。据此,在Notch3缺陷型胚胎干细胞中,响应于Notch激活的PDGFR-β上调也减少了。最后,在携带NOTCH3错义突变的CADASIL患者的VSMC中,响应配体诱导的Notch激活,PDGFR-beta mRNA和蛋白质的上调显着减少。总之,这些数据揭示了脉管系统中两个重要信号系统Notch和PDGF的层次结构,并提供了有关Notch信号失调如何扰动VSMC分化和功能的见解。

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