Kuras L, Struhl K
Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts 02115, USA.
Nature. 1999 Jun 10;399(6736):609-13. doi: 10.1038/21239.
In eukaryotes, transcriptional activators have been proposed to function by recruiting the RNA polymerase II (Pol II) machinery, by altering the conformation of this machinery, or by affecting steps after initiation, but the evidence is not definitive. Genomic footprinting of yeast TATA-box elements reveals activator-dependent alterations of chromatin structure and activator-independent protection, but little is known about the association of specific components of the Pol II machinery with promoters in vivo. Here we analyse TATA-box-binding-protein (TBP) occupancy of 30 yeast promoters in vivo. We find that TBP association with promoters is stimulated by activators and inhibited by the Cyc8-Tup1 repressor, and that transcriptional activity correlates strongly with the degree of TBP occupancy. In a small subset of promoters, TBP occupancy is higher than expected when gene activity is low, and the activator-dependent increase is modest. TBP association depends on the Pol II holoenzyme component Srb4, but not on the Kin28 subunit of the transcription factor TFIIH, even though both proteins are generally required for transcription. Thus in yeast cells, TBP association with promoters occurs in concert with the Pol II holoenzyme, activator-dependent recruitment of the Pol II machinery occurs at the vast majority of promoters, and Kin28 acts after the initial recruitment.
在真核生物中,有人提出转录激活因子通过招募RNA聚合酶II(Pol II)机制、改变该机制的构象或影响起始后的步骤来发挥作用,但证据并不确凿。酵母TATA框元件的基因组足迹分析揭示了染色质结构的激活因子依赖性改变和激活因子非依赖性保护,但对于Pol II机制的特定组分在体内与启动子的关联了解甚少。在此,我们分析了体内30个酵母启动子上TATA框结合蛋白(TBP)的占有率。我们发现,激活因子可刺激TBP与启动子的结合,而Cyc8-Tup1阻遏物则抑制这种结合,并且转录活性与TBP占有率的程度密切相关。在一小部分启动子中,当基因活性较低时,TBP占有率高于预期,且激活因子依赖性增加幅度较小。TBP的结合依赖于Pol II全酶组分Srb4,而不依赖于转录因子TFIIH的Kin28亚基,尽管这两种蛋白质通常都是转录所必需的。因此,在酵母细胞中,TBP与启动子的结合与Pol II全酶协同发生,Pol II机制的激活因子依赖性招募在绝大多数启动子上发生,而Kin28在初始招募之后起作用。