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Rrn3在核糖体DNA转录过程中失活。

Rrn3 becomes inactivated in the process of ribosomal DNA transcription.

作者信息

Hirschler-Laszkiewicz Iwona, Cavanaugh Alice H, Mirza Ayoub, Lun Mingyue, Hu Qiyue, Smink Tom, Rothblum Lawrence I

机构信息

Sigfried and Janet Weis Center for Research, Geisinger Clinic, Danville, Pennsylvania 17821, USA.

出版信息

J Biol Chem. 2003 May 23;278(21):18953-9. doi: 10.1074/jbc.M301093200. Epub 2003 Mar 19.

Abstract

The human homologue of yeast Rrn3, a 72-kDa protein, is essential for ribosomal DNA (rDNA) transcription. Although the importance of Rrn3 function in rDNA transcription is well established, its mechanism of action has not been determined. It has been suggested that the phosphorylation of either yeast RNA polymerase I or mammalian Rrn3 regulates the formation of RNA polymerase I.Rrn3 complexes that can interact with the committed template. These and other reported differences would have implications with respect to the mechanism by which Rrn3 functions in transcription. For example, in the yeast rDNA transcription system, Rrn3 might function catalytically, but in the mammalian system it might function stoichiometrically. Thus, we examined the question as to whether Rrn3 functions catalytically or stoichiometrically. We report that mammalian Rrn3 becomes the limiting factor as transcription reactions proceed. Moreover, we demonstrate that Rrn3 is inactivated during the transcription reactions. For example, Rrn3 isolated from a reaction that had undergone transcription cannot activate transcription in a subsequent reaction. We also show that this inactivated Rrn3 not only dissociates from RNA polymerase I, but is not capable of forming a stable complex with RNA polymerase I. Our results indicate that Rrn3 functions stoichiometrically in rDNA transcription and that its ability to associate with RNA polymerase I is lost upon transcription.

摘要

酵母Rrn3的人类同源物是一种72 kDa的蛋白质,对核糖体DNA(rDNA)转录至关重要。尽管Rrn3在rDNA转录中的功能重要性已得到充分证实,但其作用机制尚未确定。有人提出,酵母RNA聚合酶I或哺乳动物Rrn3的磷酸化调节了能够与特定模板相互作用的RNA聚合酶I-Rrn3复合物的形成。这些以及其他已报道的差异对Rrn3在转录中发挥作用的机制具有影响。例如,在酵母rDNA转录系统中,Rrn3可能起催化作用,但在哺乳动物系统中它可能起化学计量作用。因此,我们研究了Rrn3是起催化作用还是化学计量作用的问题。我们报告称,随着转录反应的进行,哺乳动物Rrn3成为限制因素。此外,我们证明Rrn3在转录反应过程中失活。例如,从经历过转录的反应中分离出的Rrn3不能在后续反应中激活转录。我们还表明,这种失活的Rrn3不仅从RNA聚合酶I上解离,而且不能与RNA聚合酶I形成稳定的复合物。我们的结果表明,Rrn3在rDNA转录中起化学计量作用,并且其与RNA聚合酶I结合的能力在转录后丧失。

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