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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Mutational Analysis of Yeast TFIIB: A Functional Relationship Between Ssu72 and Sub1/Tsp1 Defined by Allele-Specific Interactions With TFIIB
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Mutational Analysis of Yeast TFIIB: A Functional Relationship Between Ssu72 and Sub1/Tsp1 Defined by Allele-Specific Interactions With TFIIB

机译:酵母TFIIB的突变分析:Ssu72和Sub1 / Tsp1之间的功能关系由与TFIIB的等位基因特异性相互作用定义

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TFIIB is an essential component of the RNA polymerase II core transcriptional machinery. Previous studies have defined TFIIB domains required for interaction with other transcription factors and for basal transcription in vitro. In the study reported here we investigated the TFIIB structural requirements for transcription initiation in vivo. A library of sua7 mutations encoding altered forms of yeast TFIIB was generated by error-prone polymerase chain reaction and screened for conditional growth defects. Twenty-two single amino acid replacements in TFIIB were defined and characterized. These replacements are distributed throughout the protein and occur primarily at phylogenetically conserved positions. Most replacements have little or no effect on the steady-state protein levels, implying that each affects TFIIB function rather than synthesis or stability. In contrast to the initial sua7 mutants, all replacements, with one exception, have no effect on start site selection, indicating that specific TFIIB structural defects affect transcriptional accuracy. This collection of sua7 alleles, including the initial sua7 alleles, was used to investigate the allele specificity of interactions between ssu72 and sub1 , both of which were initially identified as either suppressors ( SUB1 2 μ) or enhancers ( sub1 Δ, ssu72-1 ) of sua7 mutations. We show that the interactions of ssu72-1 and sub1 Δ with sua7 are allele specific; that the allele specificities of ssu72 and sub1 overlap; and that each of the sua7 alleles that interacts with ssu72 and sub1 affects the accuracy of transcription start site selection. These results demonstrate functional interactions among TFIIB, Ssu72, and Sub1 and suggest that these interactions play a role in the mechanism of start site selection by RNA polymerase II.
机译:TFIIB是RNA聚合酶II核心转录机制的重要组成部分。先前的研究已定义了与其他转录因子相互作用和体外基础转录所需的TFIIB域。在这里报道的研究中,我们研究了体内转录起始的TFIIB结构要求。通过容易出错的聚合酶链反应生成了编码酵母TFIIB改变形式的sua7突变文库,并筛选了条件生长缺陷。定义并表征了TFIIB中的22个单氨基酸替代物。这些替代分布在整个蛋白质中,主要发生在系统进化上的保守位置。大多数替代品对稳态蛋白质水平几乎没有影响,甚至没有影响,这意味着每种替代品都会影响TFIIB功能,而不是合成或稳定性。与最初的sua7突变体相反,除一个例外,所有替代都对起始位点选择没有影响,表明特定的TFIIB结构缺陷会影响转录准确性。包括最初的sua7等位基因在内的sua7等位基因集合用于研究ssu72和sub1之间相互作用的等位基因特异性,二者最初被确定为抑制剂(SUB1 2μ)或增强子(sub1Δ,ssu72-1)。 sua7突变。我们显示,ssu72-1和sub1Δ与sua7的相互作用是等位基因特异性的。 ssu72和sub1的等位基因特异性重叠;与ssu72和sub1相互作用的每个sua7等位基因都会影响转录起始位点选择的准确性。这些结果证明了TFIIB,Ssu72和Sub1之间的功能相互作用,并表明这些相互作用在RNA聚合酶II选择起始位点的机制中起作用。

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