Kulkens T, van der Sande C A, Dekker A F, van Heerikhuizen H, Planta R J
Laboratorium voor Biochemie en Moleculaire Biologie, Vrije Universiteit, Amsterdam, The Netherlands.
EMBO J. 1992 Dec;11(12):4665-74. doi: 10.1002/j.1460-2075.1992.tb05568.x.
We have developed a novel system to study transcription by yeast RNA polymerase I (Pol I) of mutated rDNA units within the chromosomal context. For this, complete rDNA units carrying specific oligonucleotide tags in both the 17S and 26S rRNA genes were integrated into the chromosomal rDNA locus. Using this novel system, we analysed the action of the rDNA enhancer in stimulating transcription within the chromosomal context. We found that the enhancer acts as a stimulatory element in both directions, mainly on its two most proximal rRNA operons. Deletion of the sequences between the enhancer and the Pol I promoter in the tagged, integrated unit indicated that this part of the intergenic spacer contains no other transcriptional regulatory elements for Pol I. We also applied the system to study the function of the rDNA binding protein RBP1/REB1. For this purpose, we analysed tagged units in which either one or both of the binding sites for this protein have been inactivated. We found that mutations of both binding sites strongly diminish the transcription of the adjacent operon. The protein is hypothesized to play a crucial role in keeping the chromosomal rDNA units in an optimal spatial configuration by anchoring consecutive enhancers and promoters to the nucle(ol)ar matrix.
我们开发了一种新型系统,用于在染色体环境中研究酵母RNA聚合酶I(Pol I)对突变rDNA单元的转录作用。为此,将在17S和26S rRNA基因中携带特定寡核苷酸标签的完整rDNA单元整合到染色体rDNA位点。利用这个新型系统,我们分析了rDNA增强子在染色体环境中刺激转录的作用。我们发现,增强子在两个方向上都作为刺激元件起作用,主要作用于其最靠近的两个rRNA操纵子。在标记的整合单元中删除增强子和Pol I启动子之间的序列表明,基因间隔区的这部分不包含其他用于Pol I的转录调控元件。我们还应用该系统研究rDNA结合蛋白RBP1/REB1的功能。为此,我们分析了该蛋白的一个或两个结合位点已失活的标记单元。我们发现,两个结合位点的突变会强烈降低相邻操纵子的转录。据推测,该蛋白通过将连续的增强子和启动子锚定到核(仁)基质上,在使染色体rDNA单元保持最佳空间构型方面发挥关键作用。