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古菌中的小非编码RNA。

Small non-coding RNAs in Archaea.

作者信息

Dennis Patrick P, Omer Arina

机构信息

The Division of Molecular and Cellular Biosciences, National Science Foundation, 4201 Wilson Blvd., Arlington, VA 22230, USA.

出版信息

Curr Opin Microbiol. 2005 Dec;8(6):685-94. doi: 10.1016/j.mib.2005.10.013. Epub 2005 Oct 26.

Abstract

Biochemical and informatics analyses conducted over the past few years have revealed the presence of a plethora of small non-coding RNAs in various species of Archaea. A large proportion of these RNAs contain a common structural motif called the RNA kink turn (K-turn). The best-characterized are the C/D box and the H/ACA box guide small (s)RNAs. Both contain the K-turn fold and require the binding of the L7Ae protein to stabilize the structure of this crucial motif. These sRNAs assemble with L7Ae and several other proteins into complex and dynamic ribonucleoprotein machines that mediate guide-directed ribose methylation or pseudouridylation to specific locations in ribosomal or transfer RNA. Analyses of new archaeal sRNA libraries have identified additional classes of novel sRNAs; many of these contain the RNA K-turn motif and suggest that the RNAs might function as ribonucleoprotein complexes. Some have characteristics of small interfering RNAs or of micro RNAs that have been implicated in the post-transcriptional control of gene expression, whereas others appear to be involved in protein translocation or in ribosomal RNA processing and ribosome assembly. A complete understanding of the structure of the K-turn motif and its contribution to various RNA-RNA and RNA-protein interactions will be absolutely essential to fully elucidate the biological organization, activity and function of these novel archaeal ribonucleoprotein machines.

摘要

过去几年进行的生化和信息学分析表明,在多种古菌物种中存在大量小非编码RNA。这些RNA中的很大一部分含有一种称为RNA扭结转角(K-turn)的常见结构基序。特征最明确的是C/D盒和H/ACA盒引导小RNA(sRNA)。两者都含有K-turn折叠,并且需要L7Ae蛋白的结合来稳定这一关键基序的结构。这些sRNA与L7Ae和其他几种蛋白质组装成复杂且动态的核糖核蛋白机器,介导引导定向的核糖甲基化或假尿苷化到核糖体RNA或转运RNA的特定位置。对新的古菌sRNA文库的分析已经鉴定出其他几类新型sRNA;其中许多含有RNA K-turn基序,并表明这些RNA可能作为核糖核蛋白复合物发挥作用。一些具有小干扰RNA或微小RNA的特征,这些RNA已被证明与基因表达的转录后调控有关,而其他一些似乎参与蛋白质转运或核糖体RNA加工及核糖体组装。要全面阐明这些新型古菌核糖核蛋白机器的生物学组织、活性和功能,完全了解K-turn基序的结构及其对各种RNA-RNA和RNA-蛋白质相互作用的贡献绝对至关重要。

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