Dubendorff J W, Lipsick J S
Department of Pathology, Stanford University School of Medicine, California 94305-5324, USA.
Oncogene. 1999 Jun 10;18(23):3452-60. doi: 10.1038/sj.onc.1202679.
The c-Myb protein binds to DNA, can regulate transcription, and is required for normal hematopoiesis in vertebrates. Either amino- or carboxy-terminal truncation of this protein is required for efficient oncogenic activation. Previous studies have shown that the carboxyl terminus of c-Myb that is deleted in v-Myb contains negative regulatory domains. We now demonstrate that specific mutations within this carboxyl terminus result in greater transcriptional activation than truncation of the entire carboxyl terminus. Furthermore, this increased transcriptional activation depends upon the presence of the highly conserved Myb DNA-binding domain and is also dependent upon the nature of the Myb-binding sites within the target promoter. In a similar fashion, an activating mutation within the heptad leucine repeat region of c-Myb that is also present in v-Myb functions only in conjunction with the Myb DNA-binding domain and with particular Myb-binding sites. These results suggest a model in which multiple domains of the c-Myb protein are highly interdependent for transcriptional regulation. These interactions are promoter-specific and are not well modeled by heterologous fusion proteins.
c-Myb蛋白可与DNA结合,能调节转录,是脊椎动物正常造血所必需的。该蛋白的氨基末端或羧基末端截短对于有效的致癌激活是必需的。先前的研究表明,v-Myb中缺失的c-Myb羧基末端含有负调控结构域。我们现在证明,该羧基末端内的特定突变比整个羧基末端截短导致更强的转录激活。此外,这种增加的转录激活依赖于高度保守的Myb DNA结合结构域的存在,并且还取决于靶启动子内Myb结合位点的性质。以类似的方式,c-Myb的七肽亮氨酸重复区域内的一个激活突变(v-Myb中也存在)仅与Myb DNA结合结构域以及特定的Myb结合位点共同起作用。这些结果提示了一个模型,其中c-Myb蛋白的多个结构域在转录调控方面高度相互依赖。这些相互作用是启动子特异性的,并且异源融合蛋白不能很好地模拟这些相互作用。