Austen M, Cerni C, Lüscher-Firzlaff J M, Lüscher B
Institut für Molekularbiologie, Medizinische Hochschule Hannover, Germany.
Oncogene. 1998 Jul 30;17(4):511-20. doi: 10.1038/sj.onc.1201968.
The proto-oncoprotein c-Myc and the multifunctional transcriptional regulator YY1 have been shown previously to interact directly in a manner that excludes Max from the complex (Shrivastava et al., 1993). As binding to Max is necessary for all known c-Myc activities we have analysed the influence of YY1 on c-Myc function. We demonstrate that YY1 is a potent inhibitor of c-Myc transforming activity. The region in YY1 required for inhibition corresponds to a functional DNA-binding domain and is distinct from the domains necessary for direct binding to c-Myc. Furthermore the transactivation domain of YY1 was not necessary suggesting that gene regulation by YY1, for example through DNA bending or displacement of regulators from DNA, could be the cause for the negative regulation of c-Myc. This model of indirect regulation of c-Myc by YY1 was supported by the finding that although YY1 did not bind to the c-Myc transactivation domain (TAD) in vitro it was able to inhibit transactivation by Gal4-MycTAD fusion proteins in transient transfections. As for the inhibition of transformation, an intact DNA-binding domain of YY1 was necessary and sufficient for this effect. In addition YY1 did not alter c-Myc/Max DNA binding, further supporting an indirect mode of action. Our findings point to a role of YY1 as a negative regulator of cell growth with a possible involvement in tumor suppression.
原癌蛋白c-Myc和多功能转录调节因子YY1先前已被证明以一种将Max排除在复合物之外的方式直接相互作用(Shrivastava等人,1993年)。由于与Max结合是所有已知c-Myc活性所必需的,我们分析了YY1对c-Myc功能的影响。我们证明YY1是c-Myc转化活性的有效抑制剂。抑制所需的YY1区域对应于一个功能性DNA结合结构域,且与直接结合c-Myc所需的结构域不同。此外,YY1的反式激活结构域并非必需,这表明YY1对基因的调控,例如通过DNA弯曲或从DNA上置换调节因子,可能是c-Myc负调控的原因。YY1对c-Myc的这种间接调控模型得到了以下发现的支持:尽管YY1在体外不与c-Myc反式激活结构域(TAD)结合,但它能够在瞬时转染中抑制Gal4-MycTAD融合蛋白的反式激活。至于对转化的抑制,YY1完整的DNA结合结构域对此效应是必需且足够的。此外,YY1不会改变c-Myc/Max与DNA的结合,这进一步支持了一种间接作用模式。我们的研究结果表明YY1作为细胞生长的负调节因子发挥作用,可能参与肿瘤抑制。