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Direct Transactivator-Transcription Factor IID (TFIID) Contacts Drive Yeast Ribosomal Protein Gene Transcription

机译:直接反式转录因子转录因子IID(TFIID)接触驱动酵母核糖体蛋白基因转录

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摘要

Transcription factor IID (TFIID) plays a key role in regulating eukaryotic gene expression by directly binding promoters and enhancer-bound transactivator proteins. However, the precise mechanisms and outcomes of transactivator-TFIID interaction remain unclear. Transcription of yeast ribosomal protein genes requires TFIID and the DNA-binding transactivator Rap1. We have previously shown that Rap1 directly binds to the TFIID complex through interaction with its TATA-binding protein-associated factor (Taf) subunits Taf4, -5, and -12. Here, we identify and characterize the Rap1 binding domains (RBDs) of Taf4 and Taf5. These RBDs are essential for viability but dispensable for Taf-Taf interactions and TFIID stability. Cells expressing altered Rap1 binding domains exhibit conditional growth, synthetic phenotypes when expressed in combination or with altered Rap1, and are selectively defective in ribosomal protein gene transcription. Taf4 and Taf5 proteins with altered RBDs bind Rap1 with reduced affinity. We propose that collectively the Taf4, Taf5, and Taf12 subunits of TFIID represent the physical and functional targets for Rap1 interaction and, furthermore, that these interactions drive ribosomal protein gene transcription.
机译:转录因子IID(TFIID)通过直接结合启动子和结合增强子的反式激活蛋白在调节真核基因表达中起关键作用。然而,反式激活因子与TFIID相互作用的确切机制和结果尚不清楚。酵母核糖体蛋白基因的转录需要TFIID和DNA结合反式激活子Rap1。我们以前已经表明,Rap1通过与其TATA结合蛋白相关因子(Taf)亚基Taf4,-5和-12的相互作用而直接与TFIID复合物结合。在这里,我们识别和表征Taf4和Taf5的Rap1结合域(RBDs)。这些RBD对生存能力至关重要,但对于Taf-Taf相互作用和TFIID稳定性却是必不可少的。表达改变的Rap1结合域的细胞在组合表达或与改变的Rap1一起表达时表现出条件性生长,合成表型,并且在核糖体蛋白基因转录中选择性缺陷。具有改变的RBD的Taf4和Taf5蛋白以降低的亲和力结合Rap1。我们提议,TFIID的Taf4,Taf5和Taf12亚基共同代表Rap1相互作用的物理和功能靶标,此外,这些相互作用驱动核糖体蛋白基因转录。

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