Ingram W J, McCue K I, Tran T H, Hallahan A R, Wainwright B J
Institute for Molecular Bioscience, The University of Queensland, Brisbane, Queensland, Australia.
Oncogene. 2008 Feb 28;27(10):1489-500. doi: 10.1038/sj.onc.1210767. Epub 2007 Sep 17.
Aberrant regulation of signalling mechanisms that normally orchestrate embryonic development, such as the Hedgehog, Wnt and Notch pathways, is a common feature of tumorigenesis. In order to better understand the neoplastic events mediated by Hedgehog signalling, we identified over 200 genes regulated by Sonic Hedgehog in multipotent mesodermal cells. Widespread crosstalk with other developmental signalling pathways is evident, suggesting a complex network of interactions that challenges the often over-simplistic representation of these pathways as simple linear entities. Hes1, a principal effector of the Notch pathway, was found to be a target of Sonic Hedgehog in both C3H/10T1/2 mesodermal and MNS70 neural cells. Desert Hedgehog also elicited a strong Hes1 response. While Smoothened function was found necessary for upregulation of Hes1 in response to Sonic Hedgehog, the mechanism does not require gamma-secretase-mediated cleavage of Notch receptors, and appears to involve transcription factors other than RBP-Jkappa. Thus, we have defined a novel mechanism for Hes1 regulation in stem-like cells that is independent of canonical Notch signalling.
正常情况下协调胚胎发育的信号传导机制(如刺猬信号通路、Wnt信号通路和Notch信号通路)的异常调节是肿瘤发生的一个共同特征。为了更好地理解由刺猬信号传导介导的肿瘤形成事件,我们在多能中胚层细胞中鉴定了200多个受音猬因子调节的基因。与其他发育信号通路广泛的相互作用是明显的,这表明存在一个复杂的相互作用网络,这对通常将这些信号通路过度简化为简单线性实体的表述提出了挑战。Hes1是Notch信号通路的主要效应因子,在C3H/10T1/2中胚层细胞和MNS70神经细胞中均被发现是音猬因子的一个靶点。沙漠刺猬因子也引发了强烈的Hes1反应。虽然发现平滑蛋白功能对于响应音猬因子上调Hes1是必要的,但该机制并不需要γ-分泌酶介导的Notch受体切割,并且似乎涉及RBP-Jκ以外的转录因子。因此,我们定义了一种在干细胞样细胞中独立于经典Notch信号传导的Hes1调节新机制。