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抑制 Notch3 信号通路可诱导横纹肌肉瘤细胞分化,促进 p38 磷酸化和 p21(Cip1)表达,并抑制肿瘤细胞在体内外的生长。

Inhibition of Notch3 signalling induces rhabdomyosarcoma cell differentiation promoting p38 phosphorylation and p21(Cip1) expression and hampers tumour cell growth in vitro and in vivo.

机构信息

Department of Oncohematology, Ospedale Pediatrico Bambino Gesù, IRCCS, Roma, Italy.

出版信息

Cell Death Differ. 2012 May;19(5):871-81. doi: 10.1038/cdd.2011.171. Epub 2011 Nov 25.

DOI:10.1038/cdd.2011.171
PMID:22117196
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3321627/
Abstract

Rhabdomyosarcoma (RMS) is a paediatric soft-tissue sarcoma arising from skeletal muscle precursors coexpressing markers of proliferation and differentiation. Inducers of myogenic differentiation suppress RMS tumourigenic phenotype. The Notch target gene HES1 is upregulated in RMS and prevents tumour cell differentiation in a Notch-dependent manner. However, Notch receptors regulating this phenomenon are unknown. In agreement with data in RMS primary tumours, we show here that the Notch3 receptor is overexpressed in RMS cell lines versus normal myoblasts. Notch3-targeted downregulation in RMS cells induces hyper-phosphorylation of p38 and Akt essential for myogenesis, resulting in the differentiation of tumour cells into multinucleated myotubes expressing Myosin Heavy Chain. These phenomena are associated to a marked decrease in HES1 expression, an increase in p21(Cip1) level and the accumulation of RMS cells in the G1 phase. HES1-forced overexpression in RMS cells reverses, at least in part, the pro-differentiative effects of Notch3 downregulation. Notch3 depletion also reduces the tumourigenic potential of RMS cells both in vitro and in vivo. These results indicate that downregulation of Notch3 is sufficient to force RMS cells into completing a correct full myogenic program providing evidence that it contributes, partially through HES1 sustained expression, to their malignant phenotype. Moreover, they suggest Notch3 as a novel potential target in human RMS.

摘要

横纹肌肉瘤 (RMS) 是一种起源于骨骼肌肉前体的儿科软组织肉瘤,这些前体共同表达增殖和分化的标志物。肌生成分化诱导物可抑制 RMS 肿瘤表型。Notch 靶基因 HES1 在 RMS 中上调,并以 Notch 依赖性方式阻止肿瘤细胞分化。然而,调节这种现象的 Notch 受体尚不清楚。与 RMS 原发性肿瘤中的数据一致,我们在这里显示 Notch3 受体在 RMS 细胞系中过度表达,而在正常成肌细胞中则没有。在 RMS 细胞中靶向下调 Notch3 会导致 p38 和 Akt 的过度磷酸化,这对于肌生成是必不可少的,从而导致肿瘤细胞分化为表达肌球蛋白重链的多核肌管。这些现象与 HES1 表达的显著下降、p21(Cip1)水平的增加以及 RMS 细胞在 G1 期的积累有关。在 RMS 细胞中强制过表达 HES1 至少部分逆转了 Notch3 下调的促分化作用。Notch3 耗竭也降低了 RMS 细胞在体外和体内的致瘤潜能。这些结果表明,下调 Notch3 足以迫使 RMS 细胞完成正确的全肌生成程序,这表明它通过维持 HES1 的表达,部分促成了它们的恶性表型。此外,它们提示 Notch3 是人类 RMS 的一个新的潜在靶点。

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Notch pathway inhibition significantly reduces rhabdomyosarcoma invasiveness and mobility in vitro.Notch 通路抑制显著降低横纹肌肉瘤的体外侵袭性和迁移能力。
鉴定和靶向融合阴性横纹肌肉瘤中的 HES1-YAP1-CDKN1C 功能相互作用。
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