CNRS UMR3347/INSERM U1021, Institut Curie-Section Recherche, Orsay, France.
PLoS One. 2010 Oct 22;5(10):e13572. doi: 10.1371/journal.pone.0013572.
We have been investigating how interruption of differentiation contributes to the oncogenic process and the possibility to reverse the transformed phenotype by restoring differentiation. In a previous report, we correlated the capacity of intracellular Notch (ICN) to suppress v-Src-mediated transformation of quail neuroretina (QNR/v-src(ts)) cells with the acquisition by these undifferentiated cells of glial differentiation markers.
METHODOLOGY/PRINCIPAL FINDINGS: In this work, we have identified autocrine TGF-β3 signaling activation as a major effector of Notch-induced phenotypic changes, sufficient to induce transition in differentiation markers expression, suppress morphological transformation and significantly inhibit anchorage-independent growth. We also show that this signaling is constitutive of and contributes to ex-vivo autonomous QNR cell differentiation and that its down-regulation is essential to achieve v-Src-induced transformation.
CONCLUSIONS/SIGNIFICANCE: These results support the possibility that Notch signaling induces differentiation and suppresses transformation by a novel mechanism, involving secreted proteins. They also underline the importance of extracellular signals in controlling the balance between normal and transformed phenotypes.
我们一直在研究分化中断如何促进致癌过程,以及通过恢复分化来逆转转化表型的可能性。在之前的一份报告中,我们将细胞内 Notch(ICN)抑制鹌鹑神经视网膜(QNR/v-src(ts))细胞中 v-Src 介导的转化的能力与这些未分化细胞获得神经胶质分化标志物的能力相关联。
方法/主要发现:在这项工作中,我们已经确定自分泌 TGF-β3 信号激活是 Notch 诱导表型变化的主要效应因子,足以诱导分化标志物表达的转变,抑制形态转化,并显著抑制锚定非依赖性生长。我们还表明,这种信号是 QNR 细胞自主分化所必需的,并有助于其分化,并且下调它对于实现 v-Src 诱导的转化是必不可少的。
结论/意义:这些结果支持 Notch 信号通过一种涉及分泌蛋白的新机制诱导分化并抑制转化的可能性。它们还强调了细胞外信号在控制正常和转化表型之间平衡中的重要性。