Nerlov C, Ziff E B
Department of Molecular Cell Biology, University of Copenhagen, Denmark.
EMBO J. 1995 Sep 1;14(17):4318-28. doi: 10.1002/j.1460-2075.1995.tb00106.x.
We have analysed the molecular basis for the function of the C/EBP alpha transactivation domain. We have previously found that the three C/EBP alpha transactivation elements (TEs) synergistically activate transcription in mammalian cells. We now report that two of these elements, TE-I and -II, co-operatively mediate in vitro binding of C/EBP alpha to TBP and TFIIB, two essential components of the RNA polymerase II basal transcriptional apparatus. The TBP and TFIIB binding elements of C/EBP alpha coincide, and require amino acid motifs conserved between the activating members of the C/EBP family. These same motifs are necessary for the transcription activation function of TE-I and -II in both yeast and mammalian cells. Our data demonstrate a biochemical basis for the modular buildup of transactivation domains, and indicate that this modularity is conserved in eukaryote evolution. We also show that the same amino acid motifs in a cellular activator can co-operate to mediate contacts between the activator and two distinct basal transcription factors. These results suggest that domains of TBP and TFIIB that interact with activating surfaces are functionally similar and may be structurally related, and support the idea that the same amino acid motifs in an activator carry out multiple functions during the initiation process.
我们分析了C/EBPα反式激活结构域功能的分子基础。我们之前发现,三个C/EBPα反式激活元件(TEs)在哺乳动物细胞中协同激活转录。我们现在报告,其中两个元件,TE-I和-II,在体外协同介导C/EBPα与TBP和TFIIB的结合,TBP和TFIIB是RNA聚合酶II基础转录装置的两个必需组分。C/EBPα的TBP和TFIIB结合元件重合,并且需要C/EBP家族激活成员之间保守的氨基酸基序。这些相同的基序对于TE-I和-II在酵母和哺乳动物细胞中的转录激活功能是必需的。我们的数据证明了反式激活结构域模块化构建的生化基础,并表明这种模块化在真核生物进化中是保守的。我们还表明,细胞激活剂中的相同氨基酸基序可以协同介导激活剂与两个不同基础转录因子之间的接触。这些结果表明,与激活表面相互作用的TBP和TFIIB结构域在功能上相似且可能在结构上相关,并支持这样的观点,即激活剂中的相同氨基酸基序在起始过程中执行多种功能。