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C/D和H/ACA s(no)RNP中的RNA结构与功能

RNA structure and function in C/D and H/ACA s(no)RNPs.

作者信息

Henras Anthony K, Dez Christophe, Henry Yves

机构信息

Department of Chemistry & Biochemistry, UCLA Box 951569, 607 Charles E Young Drive East, Los Angeles, CA 90095-1569, USA.

出版信息

Curr Opin Struct Biol. 2004 Jun;14(3):335-43. doi: 10.1016/j.sbi.2004.05.006.

Abstract

From archaea to humans, C/D- and H/ACA-type small ribonucleoprotein particles play key roles in crucial RNA processing events. Various such particles are required for pre-rRNA cleavage steps and/or for chemical modification of rRNAs, spliceosomal small nuclear RNAs, tRNAs and perhaps even mRNAs. Each C/D-type particle contains a small RNA possessing conserved C and D, as well as related C' and D', sequence motifs, whereas each H/ACA-type particle contains a small RNA featuring conserved H and ACA sequence elements. Recently published studies highlight the importance of sequence and structural elements of these RNAs in the localization, activity and assembly of the ribonucleoprotein particles. A novel sequence element, the Cajal body box, found at the apex of stem structures within a subset of H/ACA small RNAs, mediates the specific retention of particles containing these elements inside nucleoplasmic Cajal bodies. Two highly conserved elements, the m1 and m2 boxes, have been identified in the 3' stem of the atypical H/ACA snR30/U17 RNAs. These conserved sequence elements are necessary for early pre-rRNA cleavage events and consequently for mature 18S rRNA production. Finally, convincing evidence has been provided that the conserved C and D sequence motifs of C/D-type small RNAs fold into a helix-bulge-helix structure, called a kink-turn, that provides a platform for assembly of C/D-type ribonucleoprotein particles.

摘要

从古细菌到人类,C/D型和H/ACA型小核糖核蛋白颗粒在关键的RNA加工事件中发挥着关键作用。前体rRNA的切割步骤和/或rRNA、剪接体小核RNA、tRNA甚至可能mRNA的化学修饰都需要各种此类颗粒。每个C/D型颗粒都包含一个具有保守C和D以及相关C'和D'序列基序的小RNA,而每个H/ACA型颗粒都包含一个具有保守H和ACA序列元件的小RNA。最近发表的研究强调了这些RNA的序列和结构元件在核糖核蛋白颗粒的定位、活性和组装中的重要性。一种新的序列元件,即卡哈尔体盒,在H/ACA小RNA子集的茎结构顶端被发现,它介导了含有这些元件的颗粒在核质卡哈尔体内的特异性滞留。在非典型H/ACA snR30/U17 RNA的3'茎中鉴定出了两个高度保守的元件,即m1和m2盒。这些保守的序列元件对于早期前体rRNA切割事件以及因此对于成熟18S rRNA的产生是必需的。最后,有确凿证据表明,C/D型小RNA的保守C和D序列基序折叠成一种称为扭结转弯的螺旋-凸起-螺旋结构,为C/D型核糖核蛋白颗粒的组装提供了一个平台。

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