Rooney Nicholas, Riggio Alessandra I, Mendoza-Villanueva Daniel, Shore Paul, Cameron Ewan R, Blyth Karen
Beatson Institute for Cancer Research, Bearsden, Glasgow, G61 1BD, UK.
Faculty of Life Sciences, University of Manchester, Manchester, M13 9PT, UK.
Adv Exp Med Biol. 2017;962:353-368. doi: 10.1007/978-981-10-3233-2_22.
A full understanding of RUNX gene function in different epithelial lineages has been thwarted by the lethal phenotypes observed when constitutively knocking out these mammalian genes. However temporal expression of the Runx genes throughout the different phases of mammary gland development is indicative of a functional role in this tissue. A few studies have emerged describing how these genes impact on the fate of mammary epithelial cells by regulating lineage differentiation and stem/progenitor cell potential, with implications for the transformed state. The importance of the RUNX/CBFβ core factor binding complex in breast cancer has very recently been highlighted with both RUNX1 and CBFβ appearing in a comprehensive gene list of predicted breast cancer driver mutations. Nonetheless, the evidence to date shows that the RUNX genes can have dualistic outputs with respect to promoting or constraining breast cancer phenotypes, and that this may be aligned to individual subtypes of the clinical disease. We take this opportunity to review the current literature on RUNX and CBFβ in the normal and neoplastic mammary lineage while appreciating that this is likely to be the tip of the iceberg in our knowledge.
对RUNX基因在不同上皮谱系中的功能进行全面了解,受到了在组成型敲除这些哺乳动物基因时观察到的致死表型的阻碍。然而,Runx基因在乳腺发育不同阶段的时空表达表明其在该组织中具有功能作用。已经出现了一些研究,描述了这些基因如何通过调节谱系分化和干细胞/祖细胞潜能来影响乳腺上皮细胞的命运,并对转化状态产生影响。RUNX/CBFβ核心因子结合复合物在乳腺癌中的重要性最近得到了强调,RUNX1和CBFβ都出现在一份预测乳腺癌驱动突变的综合基因列表中。尽管如此,迄今为止的证据表明,RUNX基因在促进或抑制乳腺癌表型方面可能具有二元输出,并且这可能与临床疾病的各个亚型相关。我们借此机会回顾当前关于正常和肿瘤乳腺谱系中RUNX和CBFβ的文献,同时认识到这可能只是我们知识冰山的一角。