Peiró-Chova Lorena, Estruch Francisco
Department of Biochemistry and Molecular Biology, Universitat de València, 46100 Burjassot, Spain.
J Biol Chem. 2009 Oct 16;284(42):28958-67. doi: 10.1074/jbc.M109.012153. Epub 2009 Aug 13.
RNA polymerase II (RNA pol II) is a multisubunit enzyme that requires many auxiliary factors for its activity. Over the years, these factors have been identified using both biochemical and genetic approaches. Recently, the systematic characterization of protein complexes by tandem affinity purification and mass spectroscopy has allowed the identification of new components of well established complexes, including the RNA pol II holoenzyme. Using this approach, a novel and highly conserved factor, Iwr1p, that physically interacts with most of the RNA pol II subunits has been described in yeast. Here we show that Iwr1p genetically interacts with components of the basal transcription machinery and plays a role in both basal and regulated transcription. We report that mutation of the IWR1 gene is able to bypass the otherwise essential requirement for the transcriptional regulator negative cofactor 2, which occurs with different components of the basal transcription machinery, including TFIIA and subunits of the mediator complex. Deletion of the IWR1 gene leads to an altered expression of specific genes, including phosphate-responsive genes and SUC2. Our results show that Iwr1p is a nucleocytoplasmic shuttling protein and suggest that Iwr1p acts early in the formation of the pre-initiation complex by mediating the interaction of certain activators with the basal transcription apparatus.
RNA聚合酶II(RNA pol II)是一种多亚基酶,其活性需要许多辅助因子。多年来,这些因子已通过生化和遗传方法得以鉴定。最近,通过串联亲和纯化和质谱对蛋白质复合物进行系统表征,使得鉴定包括RNA pol II全酶在内的成熟复合物的新组分成为可能。利用这种方法,在酵母中已描述了一种与大多数RNA pol II亚基发生物理相互作用的新型且高度保守的因子Iwr1p。在此我们表明,Iwr1p在遗传上与基础转录机制的组分相互作用,并在基础转录和调控转录中均发挥作用。我们报告称,IWR1基因突变能够绕过对转录调节因子负辅因子2的原本必需需求,这种需求在基础转录机制的不同组分(包括TFIIA和中介体复合物的亚基)中都会出现。IWR1基因的缺失导致特定基因(包括磷酸盐应答基因和SUC2)的表达改变。我们的结果表明,Iwr1p是一种核质穿梭蛋白,并提示Iwr1p通过介导某些激活因子与基础转录装置的相互作用,在起始前复合物的形成早期发挥作用。