首页> 外文OA文献 >TFIIIB placement on a yeast U6 RNA gene in vivo is directed primarily by TFIIIC rather than by sequence-specific DNA contacts.
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TFIIIB placement on a yeast U6 RNA gene in vivo is directed primarily by TFIIIC rather than by sequence-specific DNA contacts.

机译:体内将TFIIIB放置在酵母U6 RNA基因上的主要途径是TFIIIC,而不是序列特异性的DNA接触。

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摘要

The Saccharomyces cerevisiae U6 RNA gene (SNR6), which is transcribed by RNA polymerase III, has an unusual combination of promoter elements: an upstream TATA box, an intragenic A block, and a downstream B block. In tRNA genes, the A and B blocks are binding sites for the transcription initiation factor TFIIIC, which positions TFIIIB a fixed distance upstream of the A block. However, in vitro transcription of SNR6 with purified components requires neither TFIIIC nor the A and B blocks, presumably because TFIIIB recognizes the upstream sequences directly. Here we demonstrate that TFIIIB placement on SNR6 in vivo is directed primarily by the TFIIIC-binding elements rather than by upstream sequences. We show that the A block is a stronger start site determinant than the upstream sequences when the two are uncoupled by an insertion mutation. Furthermore, while TFIIIC-independent in vitro transcription of SNR6 is highly sensitive to TATA box point mutations, in vivo initiation on SNR6 is only marginally sensitive to such mutations unless the A block is mutated. Intriguingly, a deletion downstream of the U6 RNA coding region that reduces A-to-B block spacing also increases in vivo dependence on the TATA box. Moreover, this deletion results in the appearance of micrococcal nuclease-hypersensitive sites in the TFIIIB chromatin footprint, indicating that TFIIIB binding is disrupted by a mutation 150 bp distant. This and additional chromatin footprinting data suggest that SNR6 is assembled into a nucleoprotein complex that facilitates the TFIIIC-dependent binding of TFIIIB.
机译:由RNA聚合酶III转录的酿酒酵母U6 RNA基因(SNR6)具有不同寻常的启动子组合:上游TATA盒,基因内A块和下游B块。在tRNA基因中,A和B嵌段是转录起始因子TFIIIC的结合位点,它将TFIIIB定位在A嵌段上游一段固定距离处。但是,用纯化的成分进行的SNR6的体外转录不需要TFIIIC或A和B嵌段,大概是因为TFIIIB直接识别上游序列。在这里,我们证明了TFIIIB在SNR6体内的位置主要由TFIIIC结合元件而不是上游序列指导。我们显示,当二者通过插入突变解偶联时,A嵌段是比上游序列更强的起始位点决定簇。此外,虽然不依赖TFIIIC的SNR6的体外转录对TATA盒点突变高度敏感,但除非A嵌段发生突变,否则在SNR6上的体内起始仅对此类突变略微敏感。有趣的是,U6 RNA编码区下游的缺失会减少A到B的间隔,这也会增加体内对TATA盒的依赖性。此外,这种删除导致在TFIIIB染色质足迹中出现微球菌核酸酶超敏感位点,表明TFIIIB结合被距离150 bp的突变破坏。该染色质足迹数据和其他染色质足迹数据表明,SNR6被组装成核蛋白复合物,从而促进TFIIIB依赖TFIIIC的结合。

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