Larsson L G, Bahram F, Burkhardt H, Lüscher B
Department of Pathology, University of Uppsala, Sweden.
Oncogene. 1997 Aug 7;15(6):737-48. doi: 10.1038/sj.onc.1201390.
The bHLHZip protein Max interacts with both the Myc and Mad family proteins forming heterodimers which specifically bind certain E-box DNA recognition sequences, thereby regulating transcription. Whereas Myc proteins actively promote cell proliferation, Mad complexes have the opposite function. Although the main regulation of this network seems to be the control of myc- and mad family gene expression, regulation at the level of DNA-binding and transactivation may also be in operation. Few studies on the DNA-binding activity of native Myc:Max or Max:Mad complexes have been reported mainly due to technical difficulties. To overcome these problems we have developed a specific and sensitive solid phase DNA-binding assay based on partial purification of native Myc, Max and Mad1 complexes by immunological methods. Using this technique we report that the DNA-binding activity of c-Myc-containing complexes is reduced during induced differentiation of U-937 monoblasts and F9 embryonic teratocarcinoma cells. In contrast, the DNA-binding of Mad1-containing complexes increases during monocytic differentiation. In general, the DNA-binding activity of c-Myc and Mad1 correlate with their expression. However, our studies of early kinetics of TPA-induced differentiation of U-937 cells as well as of late events during F9 differentiation suggest that post-translational regulation of Myc and Max DNA-binding may also occur. The solid phase DNA-binding assay may thus provide a tool to study the regulation of DNA-binding in more detail.
bHLHZip蛋白Max与Myc和Mad家族蛋白相互作用,形成特异性结合某些E-box DNA识别序列的异二聚体,从而调控转录。Myc蛋白积极促进细胞增殖,而Mad复合物则具有相反的功能。尽管该网络的主要调控似乎是对myc和mad家族基因表达的控制,但DNA结合和反式激活水平的调控也可能在起作用。由于技术困难,关于天然Myc:Max或Max:Mad复合物DNA结合活性的研究报道很少。为克服这些问题,我们开发了一种基于免疫方法对天然Myc、Max和Mad1复合物进行部分纯化的特异性灵敏固相DNA结合测定法。利用该技术,我们报道在U-937单核细胞和F9胚胎性癌细胞诱导分化过程中,含c-Myc复合物的DNA结合活性降低。相反,在单核细胞分化过程中,含Mad1复合物的DNA结合增加。一般来说,c-Myc和Mad1的DNA结合活性与其表达相关。然而,我们对TPA诱导U-937细胞分化的早期动力学以及F9分化后期事件的研究表明,Myc和Max DNA结合的翻译后调控也可能发生。因此,固相DNA结合测定法可能为更详细地研究DNA结合调控提供一种工具。