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Displacement of Xenopus transcription factor IIIA from a 5S rRNA gene by a transcribing RNA polymerase.

机译:通过转录RNA聚合酶从5S rRNA基因置换非洲爪蟾转录因子IIIA。

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摘要

In the absence of other components of the RNA polymerase III transcription machinery, transcription factor IIIA (TFIIIA) can be displaced from both strands of its DNA-binding site (the internal control region) on the somatic-type 5S rRNA gene of Xenopus borealis during transcription elongation by bacteriophage T7 RNA polymerase, regardless of which DNA strand is transcribed. Furthermore, substantial displacement is observed after the template has been transcribed only once. Since the complete 5S rRNA transcription complex has previously been shown to remain stably bound to the gene during repeated rounds of transcription by either RNA polymerase III or bacteriophage SP6 RNA polymerase, these results indicate that a factor(s) in addition to TFIIIA is required to create a complex that will remain stably associated with the template during transcription. Thus, transcription complex stability during passage of RNA polymerase cannot be explained solely on the basis of the DNA-binding properties of TFIIIA.
机译:在没有RNA聚合酶III转录机制的其他成分的情况下,转录因子IIIA(TFIIIA)可以从非洲爪蟾的体细胞型5S rRNA基因上其DNA结合位点(内部控制区)的两条链中置换出来。噬菌体T7 RNA聚合酶的转录伸长率,无论转录的是哪条DNA链。此外,在仅转录一次模板后,观察到大量位移。由于先前已显示完整的5S rRNA转录复合物在通过RNA聚合酶III或噬菌体SP6 RNA聚合酶进行的重复转录过程中保持与基因的稳定结合,因此这些结果表明除TFIIIA之外还需要一个因子来进行创建在转录过程中与模板保持稳定关联的复合体。因此,不能仅基于TFIIIA的DNA结合特性来解释RNA聚合酶通过期间的转录复合物稳定性。

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