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Distinct Mutations in Yeast TAFII25 Differentially Affect the Composition of TFIID and SAGA Complexes as Well as Global Gene Expression Patterns

机译:酵母TAFII25中的不同突变差异影响TFIID和SAGA复合物的组成以及整体基因表达模式

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摘要

The RNA polymerase II transcription factor TFIID, composed of the TATA-binding protein (TBP) and TBP-associated factors (TAFIIs), nucleates preinitiation complex formation at protein-coding gene promoters. SAGA, a second TAFII-containing multiprotein complex, is involved in transcription regulation in Saccharomyces cerevisiae. One of the essential protein components common to SAGA and TFIID is yTAFII25. We define a minimal evolutionarily conserved 91-amino-acid region of TAFII25 containing a histone fold domain that is necessary and sufficient for growth in vivo. Different temperature-sensitive mutations of yTAFII25 or chimeras with the human homologue TAFII30 arrested cell growth at either the G1 or G2/M cell cycle phase and displayed distinct phenotypic changes and gene expression patterns. Immunoprecipitation studies revealed that TAFII25 mutation-dependent gene expression and phenotypic changes correlated at least partially with the integrity of SAGA and TFIID. Genome-wide expression analysis revealed that the five TAFII25 temperature-sensitive mutant alleles individually affect the expression of between 18 and 33% of genes, whereas taken together they affect 64% of all class II genes. Thus, different yTAFII25 mutations induce distinct phenotypes and affect the regulation of different subsets of genes, demonstrating that no individual TAFII mutant allele reflects the full range of its normal functions.
机译:RNA聚合酶II转录因子TFIID由TATA结合蛋白(TBP)和TBP相关因子(TAFIIs)组成,可在蛋白质编码基因启动子上形成预启动复合物。 SAGA,第二种含TAFII的多蛋白复合物,参与酿酒酵母的转录调控。 yTAFII25是SAGA和TFIID共有的必需蛋白质成分之一。我们定义了TAFII25的最小进化保守的91个氨基酸区域,其中包含一个组蛋白折叠域,这对于体内生长是必需的和足够的。 yTAFII25或嵌合体与人同源物TAFII30的不同温度敏感性突变在G1或G2 / M细胞周期阶段阻止了细胞的生长,并表现出明显的表型变化和基因表达模式。免疫沉淀研究表明,TAFII25突变依赖性基因表达和表型变化至少部分与SAGA和TFIID的完整性相关。全基因组表达分析显示,五个TAFII25温度敏感突变等位基因分别影响18%至33%的基因表达,而加在一起,它们影响所有II类基因的64%。因此,不同的yTAFII25突变诱导不同的表型并影响基因的不同子集的调节,表明没有单独的TAFII突变等位基因能反映其正常功能的全部范围。

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