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首页> 外文期刊>American Journal of Physiology >Notch-mediated CBF-1/RBP-J{kappa}-dependent regulation of human vascular smooth muscle cell phenotype in vitro.
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Notch-mediated CBF-1/RBP-J{kappa}-dependent regulation of human vascular smooth muscle cell phenotype in vitro.

机译:Notch介导的CBF-1 / RBP-J {kappa}依赖性人类血管平滑肌细胞表型的体外调节。

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Vascular smooth muscle cell (VSMC) phenotypic modulation is a key factor in vascular pathology. We have investigated the role of Notch receptor signaling in controlling human vascular smooth muscle cell (hVSMC) differentiation in vitro and established a role for cyclic strain-induced changes in Notch signaling in promoting this phenotypic response. The expression of alpha-actin, calponin, myosin, and smoothelin was examined by performing immunocytochemistry, Western blot analysis, and quantitative real-time PCR in hVSMCs cultured under static conditions after forced overexpression of constitutively active Notch 1 and 3 receptors, inhibition of endogenous Cp-binding factor 1 (CBF-1)/recombination signal sequence-binding protein-Jkappa (RBP-Jkappa) signaling, and exposure to cyclic strain using a Flexercell Tension Plus unit. Overexpression of constitutively active Notch intracellular (IC) receptors (Notch 1 IC and Notch 3 IC) resulted in a significant downregulation of alpha-actin, calponin, myosin, andsmoothelin expression, an effect that was significantly attenuated after inhibition of Notch-mediated, CBF-1/RBP-Jkappa-dependent signaling by coexpression of RPMS-1 (Epstein-Barr virus-encoded gene product) and selective knockdown of basic helix-loop-helix factors [hairy enhancer of split (HES) gene and Hes-related transcription (Hrt) factors Hrt-1, Hrt-2, and Hrt-3] using targeted small interfering RNA. Cells cultured under conditions of defined equibiaxial cyclic strain (10% strain, 60 cycles/min, 24 h) exhibited a significant reduction in Notch 1 IC and Notch 3 IC expression concomitant with a significant increase in VSMC differentiation marker expression. Moreover, this cyclic strain-induced increase was further enhanced after inhibition of CBF-1/RBP-Jkappa-dependent signaling with RPMS-1. These findings suggest that Notch promotes changes in hVSMC phenotype via activation of CBF-1/RBP-Jkappa-dependent pathways in vitro and contributes to the phenotypic response of VSMCs to cyclic strain-induced changes in VSMC differentiation.
机译:血管平滑肌细胞(VSMC)表型调节是血管病理学的关键因素。我们已经研究了Notch受体信号传导在体外控制人血管平滑肌细胞(hVSMC)分化中的作用,并确定了循环应变诱导的Notch信号传导变化在促进这种表型反应中的作用。通过在构成条件活跃的Notch 1和3受体强表达,抑制内源性后在静态条件下培养的hVSMC中进行免疫细胞化学,Western印迹分析和定量实时PCR检测α-肌动蛋白,钙蛋白,肌球蛋白和平滑肌蛋白的表达Cp结合因子1(CBF-1)/重组信号序列结合蛋白-Jkappa(RBP-Jkappa)信号转导,并使用Flexercell Tension Plus装置暴露于循环应变下。组成型活性Notch细胞内(IC)受体(Notch 1 IC和Notch 3 IC)的过表达导致α-肌动蛋白,钙蛋白,肌球蛋白和平滑丝蛋白的表达显着下调,抑制Notch介导的CBF后这种作用显着减弱-1 / RBP-Jkappa依赖性信号转导RPMS-1(Epstein-Barr病毒编码的基因产物)并选择性敲除基本螺旋-环-螺旋因子[分裂毛发增强子(HES)基因和与Hes相关的转录(Hrt)因子Hrt-1,Hrt-2和Hrt-3]使用靶向小干扰RNA。在定义的等双轴循环应变(10%应变,60个循环/分钟,24小时)的条件下培养的细胞显示出Notch 1 IC和Notch 3 IC表达的显着降低,同时VSMC分化标志物表达也显着增加。此外,在用RPMS-1抑制CBF-1 / RBP-Jkappa依赖性信号传导后,这种循环应变诱导的增加进一步增强。这些发现表明,Notch通过体外CBF-1 / RBP-Jkappa依赖性途径的激活促进hVSMC表型的变化,并促进VSMC对循环应变诱导的VSMC分化变化的表型反应。

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