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In vivo analyses of the internal control region in the 5S rRNA gene from Saccharomyces cerevisiae.

机译:酿酒酵母5S rRNA基因内部控制区域的体内分析。

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摘要

The internal control region of the Saccharomyces cerevisiae 5S rRNA gene has been characterized in vivo by genomic DNase I footprinting and by mutational analyses using base substitutions, deletions or insertions. A high copy shuttle vector was used to efficiently express mutant 5S rRNA genes in vivo and isotope labelling kinetics were used to distinguish impeded gene expression from nascent RNA degradation. In contrast to mutational studies in reconstituted systems, the analyses describe promoter elements which closely resemble the three distinct sequence elements that have been observed in Xenopus laevis 5S rRNA. The results indicate a more highly conserved structure than previously reported with reconstituted systems and suggest that the saturated conditions which are used in reconstitution studies mask sequence dependence which may be physiologically significant. Footprint analyses support the extended region of protein interaction which has recently been observed in some reconstituted systems, but mutational analyses indicate that these interactions are not sequence specific. Periodicity in the footprint provides further detail regarding the in vivo topology of the interacting protein.
机译:酿酒酵母5S rRNA基因的内部控制区域已在体内通过基因组DNA酶I足迹和使用碱基取代,缺失或插入的突变分析进行了表征。高拷贝穿梭载体用于在体内有效表达突变型5S rRNA基因,同位素标记动力学用于从新生RNA降解中区分受阻基因表达。与重组系统中的突变研究相反,该分析描述了启动子元件,其与非洲爪蟾5S rRNA中观察到的三个不同的序列元件非常相似。结果表明,与先前报道的重建系统相比,该结构具有更高的保守性,并表明在重建研究中使用的饱和条件掩盖了可能具有重要生理意义的序列依赖性。足迹分析支持最近在某些重构系统中观察到的蛋白质相互作用的扩展区域,但突变分析表明这些相互作用不是序列特异性的。足迹的周期性提供了有关相互作用蛋白的体内拓扑的更多细节。

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