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The linker domain of basal transcription factor TFIIB controls distinct recruitment and transcription stimulation functions

机译:基础转录因子TFIBB的接头结构域控制独特的募集和转录刺激功能

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摘要

RNA polymerases (RNAPs) require basal transcription factors to assist them during transcription initiation. One of these factors, TFIIB, combines promoter recognition, recruitment of RNAP, promoter melting, start site selection and various post-initiation functions. The ability of 381 site-directed mutants in the TFIIB 'linker domain' to stimulate abortive transcription was systematically quantitated using promoter-independent dinucleotide extension assays. The results revealed two distinct clusters (mjTFIIB E78-R80 and mjTFIIB R90-G94, respectively) that were particularly sensitive to substitutions. In contrast, a short sequence (mjTFIIB A81-K89) between these two clusters tolerated radical single amino acid substitutions; short deletions in that region even caused a marked increase in the ability of TFIIB to stimulate abortive transcription ('superstimulation'). The superstimulating activity did, however, not correlate with increased recruitment of the TFIIB/RNAP complex because substitutions in a particular residue (mjTFIIB K87) increased recruitment by more than 5-fold without affecting the rate of abortive transcript stimulation. Our work demonstrates that highly localized changes within the TFIIB linker have profound, yet surprisingly disconnected, effects on RNAP recruitment, TFIIB/RNAP complex stability and the rate of transcription initiation. The identification of superstimulating TFIIB variants reveals the existence of a previously unknown rate-limiting step acting on the earliest stages of gene expression.
机译:RNA聚合酶(RNAP)需要基础转录因子在转录起始过程中协助它们。 TFIIB是这些因素之一,它结合了启动子识别,RNAP募集,启动子融化,起始位点选择和各种启动后功能。使用独立于启动子的二核苷酸延伸测定,系统地定量了TFIIB“接头结构域”中381个定点突变体刺激流产转录的能力。结果显示了两个不同的簇(分别为mjTFIIB E78-R80和mjTFIIB R90-G94),它们对取代特别敏感。相反,这两个簇之间的短序列(mjTFIIB A81-K89)可以忍受自由基的单个氨基酸取代。该区域的短缺失甚至引起TFIIB刺激流产转录(“超刺激”)的能力显着增加。但是,超刺激活性与TFIIB / RNAP复合物的募集不相关,因为特定残基(mjTFIIB K87)中的取代使募集增加了5倍以上,而不会影响流产转录本的刺激速率。我们的工作表明,TFIIB接头内的高度局部化变化对RNAP募集,TFIIB / RNAP复合物稳定性和转录起始速率产生了深远但令人惊讶的脱节。对超刺激性TFIIB变体的鉴定揭示了存在于基因表达最早阶段的先前未知的限速步骤。

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