首页> 外文期刊>RNA >Dynamic conformational model for the role of ITS2 in pre-rRNA processing in yeast.
【24h】

Dynamic conformational model for the role of ITS2 in pre-rRNA processing in yeast.

机译:ITS2在酵母中rRNA前加工中的作用的动态构象模型。

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Maturation of the large subunit rRNAs includes a series of cleavages that result in removal of the internal transcribed spacer (ITS2) that separates mature 5.8S and 25/28S rRNAs. Previous work demonstrated that formation of higher order secondary structure within the assembling pre-ribosomal particle is a prerequisite for accurate and efficient pre-rRNA processing. To date, it is not clear which specific sequences or secondary structures are required for processing. Two alternative secondary structure models exist for Saccharomyces cerevisiae ITS2. Chemical and enzymatic structure probing and phylogenetic comparisons resulted in one structure (Yeh & Lee, J Mol Biol, 1990, 211:699-712) referred to here as the "hairpin model." More recently, an alternate folded structure was proposed (Joseph et al., Nucleic Acids Res, 1999, 27:4533-4540), called here the "ring model." We have used a functional genetic assay to examine the potential significance of these predicted structures in processing. Our data indicate that elements of both structural models are important in efficient processing. Mutations that prevent formation of ring-specific structures completely blocked production of mature 25S rRNA, whereas those that primarily disrupt hairpin elements resulted in reduced levels of mature product. Based on these results, we propose a dynamic conformational model for the role of ITS2 in processing: Initial formation of the ring structure may be required for essential, early events in processing complex assembly and may be followed by an induced transition to the hairpin structure that facilitates subsequent processing events. In this model, yeast ITS2 elements may provide in cis certain of the functions proposed for vertebrate U8 snoRNA acting in trans.
机译:大亚基rRNA的成熟包括一系列裂解,这些裂解导致去除内部转录的间隔子(ITS2),后者将成熟的5.8S和25 / 28S rRNA分开。先前的工作表明,在组装的核糖体前颗粒内形成更高阶的二级结构是准确,高效地进行rRNA预处理的先决条件。迄今为止,尚不清楚加工需要哪些特定序列或二级结构。对于酿酒酵母ITS2,存在两种替代的二级结构模型。化学和酶结构的探测和系统发育比较导致一种结构(Yeh&Lee,J Mol Biol,1990,211:699-712),在此称为“发夹模型”。最近,提出了一种替代的折叠结构(Joseph等,Nucleic Acids Res,1999,27:4533-4540),在此称为“环模型”。我们已经使用功能基因测定来检查这些预测结构在加工中的潜在意义。我们的数据表明,两种结构模型的元素在有效处理中都很重要。阻止形成环特异性结构的突变完全阻止了成熟的25S rRNA的产生,而那些主要破坏发夹元件的突变导致成熟产物水平降低。基于这些结果,我们为ITS2在加工中的作用提出了一个动态构象模型:环状结构的初始形成可能是加工复杂装配过程中必不可少的早期事件所必需的,随后可能会诱导转变为发夹结构,从而促进后续处理事件。在该模型中,酵母ITS2元件可顺式提供为脊椎动物U8 snoRNA反式作用所建议的某些功能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号