Li L H, Nerlov C, Prendergast G, MacGregor D, Ziff E B
Howard Hughes Medical Institute, Department of Biochemistry, New York University Medical Center 10016.
EMBO J. 1994 Sep 1;13(17):4070-9. doi: 10.1002/j.1460-2075.1994.tb06724.x.
We show that c-Myc, in addition to activating transcription through E-box Myc binding sites (Ems), also represses transcription by a mechanism dependent on initiator (Inr) elements of the basal promoters of susceptible genes. Repression was first observed as a component of c-Myc biphasic regulation of the adenovirus-2 major late promoter (MLP), which contains both Inr and Ems sequences. Two differentiation-specific genes containing Inr, the C/EBP alpha and albumin genes, are repressed through their basal promoters by c-Myc, but are activated by the related B-HLH-LZ factor, USF. Repression requires both the B-HLH-LZ and Myc box II (MBII) domains. Significantly, a MBII deletion mutant which is deficient in repression, but transactivates normally, fails to cooperate with an activated ras gene to transform primary fibroblasts. Thus Myc-dependent transactivation is insufficient for Ras cooperation and the novel transcription repression function is implicated in Ras cooperation as well as the suppression of Inr-dependent genes.
我们发现,c-Myc除了通过E-box Myc结合位点(Ems)激活转录外,还通过一种依赖于易感基因基础启动子起始子(Inr)元件的机制抑制转录。这种抑制最初是在c-Myc对腺病毒2型主要晚期启动子(MLP)的双相调控中观察到的,该启动子同时包含Inr和Ems序列。两个含有Inr的分化特异性基因,即C/EBPα基因和白蛋白基因,被c-Myc通过其基础启动子抑制,但被相关的B-HLH-LZ因子USF激活。抑制作用需要B-HLH-LZ和Myc框II(MBII)结构域。值得注意的是,一个缺乏抑制作用但能正常反式激活的MBII缺失突变体,无法与激活的ras基因协同作用来转化原代成纤维细胞。因此,Myc依赖的反式激活不足以实现Ras协同作用,而这种新的转录抑制功能与Ras协同作用以及对Inr依赖基因的抑制有关。