Patel Jagruti H, McMahon Steven B
The Wistar Institute, Philadelphia, Pennsylvania 19104, USA.
J Biol Chem. 2006 Feb 10;281(6):3283-9. doi: 10.1074/jbc.M513038200. Epub 2005 Dec 13.
The c-Myc oncoprotein plays a central role in human cancer via its ability to either activate or repress the transcription of essential downstream targets. For many of the repressed target genes, down-regulation by c-Myc relies on its ability to bind and inactivate the transcription factor Miz-1. Although Miz-1 inactivation is suspected to be essential for at least some of the biological activities of c-Myc, it has been difficult to demonstrate this requirement experimentally. Using a combination of short hairpin RNA-mediated knockdown and a previously characterized mutant of c-Myc that is defective for Miz-1 inactivation, we examined whether this inactivation is critical for three of the most central biological functions of c-Myc, cell cycle progression, transformation, and apoptosis. The results of this analysis demonstrated that in the in vitro assays utilized here, Miz-1 inactivation is dispensable for c-Myc-induced cell cycle progression and transformation. In marked contrast, the ability of c-Myc to induce apoptosis in primary diploid human fibroblasts in response to growth factor withdrawal is entirely dependent on its ability to inactivate Miz-1. These data have a significant impact on our understanding of the biochemical mechanisms dictating how c-Myc mediates opposing biological functions, such as transformation and apoptosis, and demonstrate the first requirement for Miz-1 inactivation in any of the biological functions of c-Myc.
c-Myc癌蛋白在人类癌症中发挥着核心作用,它能够激活或抑制关键下游靶点的转录。对于许多被抑制的靶基因而言,c-Myc介导的下调作用依赖于其结合并使转录因子Miz-1失活的能力。尽管人们怀疑Miz-1失活对于c-Myc的至少某些生物学活性至关重要,但通过实验证明这一需求一直颇具难度。我们运用短发夹RNA介导的敲低技术与先前鉴定的c-Myc突变体(该突变体在使Miz-1失活方面存在缺陷)相结合的方法,研究了这种失活对于c-Myc的三个最核心生物学功能(细胞周期进程、转化和凋亡)是否至关重要。该分析结果表明,在此处使用的体外实验中,Miz-1失活对于c-Myc诱导的细胞周期进程和转化并非必需。与之形成鲜明对比的是,c-Myc在生长因子撤除后诱导原代二倍体人成纤维细胞凋亡的能力完全依赖于其使Miz-1失活的能力。这些数据对我们理解决定c-Myc如何介导诸如转化和凋亡等相反生物学功能的生化机制具有重大影响,并证明了在c-Myc的任何生物学功能中首次出现对Miz-1失活的需求。