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Hairy-Related Transcription Factors Inhibit Notch-Induced Smooth Muscle α-Actin Expression by Interfering With Notch Intracellular Domain/CBF-1 Complex Interaction With the CBF-1–Binding Site

机译:毛发相关转录因子通过干扰Notch细胞内结构域/ CBF-1复合物与CBF-1结合位点的相互作用来抑制Notch诱导的平滑肌α-肌动蛋白的表达。

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摘要

Notch signaling regulates smooth muscle cell phenotype and is critical for vascular development. One Notch target is smooth muscle α-actin (SMA), a differentiated smooth muscle cell marker. The Notch intracellular domain (NotchICD) forms a complex with CBF-1 (C-promoter– binding factor-1) and directly induces SMA expression. Using primary human smooth muscle cells, we show that expression of the constitutive active ICD of human Notch1, Notch2, or Notch4 receptors increase SMA levels. NotchICD also induce expression of the transcriptional repressors HRT1 (Hairy-related transcription factor 1) and HRT2, in a CBF-1–dependent manner. However, unlike the activating effects of NotchICD, HRT1 or HRT2 represses basal SMA expression, and both are strong antagonists of NotchICD-induced SMA upregulation. This antagonism does not depend on histone deacetylase activity and occurs at the transcriptional level. Competitive coimmunoprecipitation experiments demonstrate that HRT does not disrupt the association of NotchICD and CBF-1, which form a complex in the presence or absence of HRTs. However, HRT suppresses NotchICD/CBF-1 binding to the SMA promoter, as measured by chromatin immunoprecipitation, and transactivation of an SMA promoter reporter spanning sequences −124/+32. SMA expression was regulated similarly following endogenous Notch activation in smooth muscle cells by coculture with endothelial cells, and this effect was also sensitive to HRT inhibition. Temporally defined HRT activity may constitute a negative feedback mechanism of Notch signaling. Our study presents a novel mechanism by which a balance between Notch signaling and HRT activity determines the expression of smooth muscle differentiation markers including SMA.
机译:Notch信号调节平滑肌细胞表型,对血管发育至关重要。一个Notch目标是平滑肌α-肌动蛋白(SMA),一种分化的平滑肌细胞标志物。 Notch细胞内结构域(NotchICD)与CBF-1(C-启动子-结合因子-1)形成复合物,并直接诱导SMA表达。使用原代人平滑肌细胞,我们显示人Notch1,Notch2或Notch4受体的组成型活性ICD的表达会增加SMA水平。 NotchICD还以依赖CBF-1的方式诱导转录阻遏物HRT1(毛发相关转录因子1)和HRT2的表达。但是,与NotchICD的激活作用不同,HRT1或HRT2抑制基础SMA表达,两者都是NotchICD诱导的SMA上调的强力拮抗剂。这种拮抗作用不依赖于组蛋白脱乙酰基酶的活性,而是在转录水平上发生。竞争性免疫共沉淀实验表明,HRT不会破坏NotchICD和CBF-1的缔合,后者在存在或不存在HRT的情况下都会形成复合体。但是,HRT抑制NotchICD / CBF-1与SMA启动子的结合,这是通过染色质免疫沉淀和SMA启动子报告子跨序列-124 / + 32的反激活来测量的。通过与内皮细胞共培养,平滑肌细胞内源性Notch激活后,SMA的表达受到类似的调节,这种作用对HRT抑制也很敏感。临时定义的HRT活动可能构成Notch信号的负反馈机制。我们的研究提出了一种新颖的机制,通过这种机制,Notch信号和HRT活性之间的平衡决定了包括SMA在内的平滑肌分化标志物的表达。

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