首页> 美国卫生研究院文献>The EMBO Journal >Both Arabidopsis TATA binding protein (TBP) isoforms are functionally identical in RNA polymerase II and III transcription in plant cells: evidence for gene-specific changes in DNA binding specificity of TBP.
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Both Arabidopsis TATA binding protein (TBP) isoforms are functionally identical in RNA polymerase II and III transcription in plant cells: evidence for gene-specific changes in DNA binding specificity of TBP.

机译:两种拟南芥属TATA结合蛋白(TBP)亚型在植物细胞中的RNA聚合酶II和III转录中在功能上都是相同的:TBP DNA结合特异性的基因特异性变化的证据。

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摘要

Promoters of pol II and pol III transcribed U-snRNA genes in plants have identical sequence elements comprised of a -30 TATA box and an upstream sequence element (USE), located four or three helical turns upstream of the TATA box in pol II and pol III genes, respectively; it is this difference in element spacing that determines the RNA polymerase specificity of the gene. We are interested in identifying factors binding to U-snRNA gene promoters and their role in selection of RNA polymerase. In this work we have investigated possible differences in the activity of the two TATA binding proteins (TBPs) encoded by two different TBP genes of Arabidopsis. Using mutant TBPs with altered DNA binding specificity, similar to those described previously in yeast, we show that two Arabidopsis TBP isoforms are equally active with both pol II and pol III U-snRNA genes and with an mRNA gene transfected into plant protoplasts. In contrast to yeast, where modified TBP permits transcription only from promoters containing the TGTAAA mutant of the consensus (TATAAA) TATA element, altered Arabidopsis TBPs also suppress other TATA box mutants. Similar results were obtained with human and yeast TBP mutants expressed in plant cells. Interestingly, in several cases suppression of different TATA box mutants by altered TBPs was gene or RNA polymerase specific suggesting that assembly of TBP into specific complexes containing different TBP-associated factors may alter DNA binding specificity of the protein.
机译:植物中pol II和pol III转录的U-snRNA基因的启动子具有相同的序列元件,该序列元件由-30个TATA框和一个上游序列元件(USE)组成,位于pol II和pol中TATA框的上游四个或三个螺旋圈III基因;元件间距的差异决定了基因的RNA聚合酶特异性。我们对确定与U-snRNA基因启动子结合的因子及其在选择RNA聚合酶中的作用感兴趣。在这项工作中,我们研究了由拟南芥的两个不同TBP基因编码的两个TATA结合蛋白(TBP)活性的可能差异。使用具有改变的DNA结合特异性的突变TBP,类似于先前在酵母中描述的突变,我们显示了两个拟南芥TBP亚型对pol II和pol III U-snRNA基因以及转染到植物原生质体中的mRNA基因均具有相同的活性。与酵母相反,修饰的TBP仅允许从含有共有(TATAAA)TATA元素的TGTAAA突变体的启动子转录,而改变的拟南芥TBPs也抑制其他TATA盒突变体。用在植物细胞中表达的人和酵母TBP突变体获得了相似的结果。有趣的是,在几种情况下,改变的TBPs对不同的TATA盒突变体的抑制是基因或RNA聚合酶特异性的,这表明将TBP组装成含有不同TBP相关因子的特定复合物可能会改变蛋白质的DNA结合特异性。

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