Ji Yi, Chen Siyuan, Xiang Bo, Li Yuan, Li Li, Wang Qi
Division of Oncology, Department of Pediatric Surgery, West China Hospital of Sichuan University, Chengdu, China.
Cell Physiol Biochem. 2016;40(5):895-907. doi: 10.1159/000453148. Epub 2016 Dec 7.
The Notch signaling pathway has been implicated in the pericyte phenotype, but its exact roles in hemangioma-derived pericytes (Hem-pericytes) remain ill defined.
Hem-pericytes were stimulated by immobilized recombinant Jagged1. The potential mechanisms of Notch-induced Hem-pericytes growth arrest were investigated by cell cycle assay, and the role of the Notch in promoting Hem-pericyte maturation was also analyzed by real-time PCR and western blot.
Activation of Notch3 in Hem-pericytes significantly reduced cell proliferation and inhibited cell cycle transition. This event was associated with an increase in the levels of p21Cip1. Knockdown of p21Cip1 resulted in a significant rescue of Notch-induced cell growth arrest and an entry into the cell cycle. We showed that Jagged1 activation of Notch3 signaling upregulated the expression of the pericyte contractile markers smooth muscle myosin heavy chain (smMHC) and α-smooth muscle actin (αSMA), concomitant with an increase in the expression of myocardin in Hem-pericytes. We further revealed that the endothelial-derived Jagged1 modulated the Hem-pericyte phenotype via a contact-dependent mechanism.
Our results demonstrated that Jagged1 activation of Notch3 resulted in a significant decrease in cell proliferation while concomitantly promoting Hem-pericyte maturation. These data provide initial evidence that Notch induces a quiescent phenotype in Hem-pericytes.
Notch信号通路与周细胞表型有关,但其在血管瘤来源的周细胞(Hem-周细胞)中的具体作用仍不明确。
用固定化重组Jagged1刺激Hem-周细胞。通过细胞周期分析研究Notch诱导Hem-周细胞生长停滞的潜在机制,并通过实时PCR和蛋白质印迹分析Notch在促进Hem-周细胞成熟中的作用。
Hem-周细胞中Notch3的激活显著降低细胞增殖并抑制细胞周期转换。这一事件与p21Cip1水平的增加有关。敲低p21Cip1可显著挽救Notch诱导的细胞生长停滞并使细胞进入细胞周期。我们发现Jagged1激活Notch3信号上调了周细胞收缩标志物平滑肌肌球蛋白重链(smMHC)和α-平滑肌肌动蛋白(αSMA)的表达,同时Hem-周细胞中心肌素的表达增加。我们进一步揭示内皮细胞来源的Jagged1通过接触依赖性机制调节Hem-周细胞表型。
我们的结果表明,Jagged1激活Notch3导致细胞增殖显著减少,同时促进Hem-周细胞成熟。这些数据提供了初步证据,表明Notch在Hem-周细胞中诱导静止表型。