Jansa P, Burek C, Sander E E, Grummt I
Division of Molecular Biology of the Cell II, German Cancer Research Center, D-69120 Heidelberg, Germany.
Nucleic Acids Res. 2001 Jan 15;29(2):423-9. doi: 10.1093/nar/29.2.423.
Termination of murine rDNA transcription by RNA polymerase I (Pol I) requires pausing of Pol I by terminator-bound TTF-I (transcription termination factor for Pol I), followed by dissociation of the ternary complex by PTRF (Pol I and transcript release factor). To examine the functional correlation between transcription termination and initiation, we have compared transcription on terminator-containing and terminator-less rDNA templates. We demonstrate that terminated RNA molecules are more efficiently synthesized than run-off transcripts, indicating that termination facilitates reinitiation. Transcriptional enhancement is observed in multiple- but not single-round transcription assays measuring either promoter-dependent or promoter-independent Pol I transcription. Increased synthesis of terminated transcripts is observed in crude extracts but not in a PTRF-free reconstituted transcription system, indicating that PTRF-mediated release of pre-rRNA is responsible for transcriptional enhancement. Consistent with PTRF serving an important role in modulating the efficiency of rRNA synthesis, PTRF exhibits pronounced charge heterogeneity, is phosphorylated at multiple sites and fractionates into transcriptionally active and inactive forms. The results suggest that regulation of PTRF activity may be an as yet unrecognized means to control the efficiency of ribosomal RNA synthesis.
RNA聚合酶I(Pol I)终止小鼠核糖体DNA(rDNA)转录需要终止子结合的转录终止因子I(TTF-I)使Pol I暂停,随后由PTRF(Pol I和转录本释放因子)使三元复合物解离。为了研究转录终止与起始之间的功能关系,我们比较了含终止子和不含终止子的rDNA模板上的转录情况。我们证明,与延伸转录本相比,终止的RNA分子合成效率更高,这表明终止促进了重新起始。在测量启动子依赖性或启动子非依赖性Pol I转录的多轮而非单轮转录试验中观察到转录增强。在粗提物中观察到终止转录本的合成增加,但在不含PTRF的重组转录系统中未观察到,这表明PTRF介导的前体核糖体RNA释放是转录增强的原因。与PTRF在调节rRNA合成效率中发挥重要作用一致,PTRF表现出明显的电荷异质性,在多个位点被磷酸化,并分离为转录活性和非活性形式。结果表明,调节PTRF活性可能是一种尚未被认识的控制核糖体RNA合成效率的方式。