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细菌中小RNA基因的鉴定及mRNA靶标的预测

Small RNA gene identification and mRNA target predictions in bacteria.

作者信息

Pichon Christophe, Felden Brice

机构信息

Unité Pathogénie Bactérienne des Muqueuses, Institut Pasteur, 25-28 Rue du Docteur Roux, 75724 Paris, France.

出版信息

Bioinformatics. 2008 Dec 15;24(24):2807-13. doi: 10.1093/bioinformatics/btn560. Epub 2008 Oct 29.

Abstract

Bacterial small ribonucleic acids (sRNAs) that are not ribosomal and transfer or messenger RNAs were initially identified in the sixties, whereas their molecular functions are still under active investigation today. It is now widely accepted that most play central roles in gene expression regulation in response to environmental changes. Interestingly, some are also implicated in bacterial virulence. Functional studies revealed that a large subset of these sRNAs act by an antisense mechanism thanks to pairing interactions with dedicated mRNA targets, usually around their translation start sites, to modulate gene expression at the posttranscriptional level. Some sRNAs modulate protein activity or mimic the structure of other macromolecules. In the last few years, in silico methods have been developed to detect more bacterial sRNAs. Among these, computational analyses of the bacterial genomes by comparative genomics have predicted the existence of a plethora of sRNAs, some that were confirmed to be expressed in vivo. The prediction accuracy of these computational tools is highly variable and can be perfectible. Here we review the computational studies that have contributed to detecting the sRNA gene and mRNA targets in bacteria and the methods for their experimental testing. In addition, the remaining challenges are discussed.

摘要

细菌中的小核糖核酸(sRNA)并非核糖体RNA、转运RNA或信使RNA,它们最初于20世纪60年代被发现,然而其分子功能至今仍在积极研究中。如今人们普遍认为,大多数sRNA在响应环境变化时的基因表达调控中发挥核心作用。有趣的是,一些sRNA也与细菌毒力有关。功能研究表明,这些sRNA中的很大一部分通过反义机制发挥作用,这要归功于它们与特定mRNA靶标的配对相互作用,通常是在其翻译起始位点附近,从而在转录后水平调节基因表达。一些sRNA调节蛋白质活性或模仿其他大分子的结构。在过去几年中,已经开发出了一些计算机方法来检测更多的细菌sRNA。其中,通过比较基因组学对细菌基因组进行的计算分析预测了大量sRNA的存在,其中一些已被证实在体内表达。这些计算工具的预测准确性差异很大,还有改进的空间。在这里,我们回顾了有助于检测细菌中sRNA基因和mRNA靶标的计算研究及其实验测试方法。此外,还讨论了剩余的挑战。

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