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Footprinting analysis of interactions between the largest eukaryotic RNase P/MRP protein Pop1 and RNase P/MRP RNA components

机译:最大的真核RNase P / MRP蛋白Pop1与RNase P / MRP RNA成分之间相互作用的足迹分析

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摘要

Ribonuclease (RNase) P and RNase MRP are closely related catalytic ribonucleoproteins involved in the metabolism of a wide range of RNA molecules, including tRNA, rRNA, and some mRNAs. The catalytic RNA component of eukaryotic RNase P retains the core elements of the bacterial RNase P ribozyme; however, the peripheral RNA elements responsible for the stabilization of the global architecture are largely absent in the eukaryotic enzyme. At the same time, the protein makeup of eukaryotic RNase P is considerably more complex than that of the bacterial RNase P. RNase MRP, an essential and ubiquitous eukaryotic enzyme, has a structural organization resembling that of eukaryotic RNase P, and the two enzymes share most of their protein components. Here, we present the results of the analysis of interactions between the largest protein component of yeast RNases P/MRP, Pop1, and the RNA moieties of the enzymes, discuss structural implications of the results, and suggest that Pop1 plays the role of a scaffold for the stabilization of the global architecture of eukaryotic RNase P RNA, substituting for the network of RNA–RNA tertiary interactions that maintain the global RNA structure in bacterial RNase P.
机译:核糖核酸酶(RNase)P和RNase MRP是密切相关的催化核糖核蛋白,参与了许多RNA分子的代谢,包括tRNA,rRNA和某些mRNA。真核RNase P的催化RNA成分保留了细菌RNase P核酶的核心元件。然而,在真核生物酶中主要缺少负责稳定整体结构的外围RNA元件。同时,真核RNase P的蛋白质组成比细菌RNase P的蛋白质组成复杂得多。RNase MRP是一种必需的普遍存在的真核酶,其结构类似于真核RNase P,这两种酶共有它们的大部分蛋白质成分。在这里,我们介绍了酵母RNases P / MRP,Pop1和酶的RNA部分最大蛋白成分之间相互作用的分析结果,讨论了结果的结构含义,并暗示Pop1发挥了支架的作用为了稳定真核RNase P RNA的整体结构,用RNA-RNA三级相互作用网络代替细菌RNase P的整体RNA结构。

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