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非编码RNA不断扩展的领域。

The expanding universe of noncoding RNAs.

作者信息

Hannon G J, Rivas F V, Murchison E P, Steitz J A

机构信息

Watson School of Biological Sciences, Howard Hughes Medical Institute, Cold Spring Harbor Laboratory, Cold Spring Harbor, New York 11724, USA.

出版信息

Cold Spring Harb Symp Quant Biol. 2006;71:551-64. doi: 10.1101/sqb.2006.71.064.

Abstract

The 71st Cold Spring Harbor Symposium on Quantitative Biology celebrated the numerous and expanding roles of regulatory RNAs in systems ranging from bacteria to mammals. It was clearly evident that noncoding RNAs are undergoing a renaissance, with reports of their involvement in nearly every cellular process. Previously known classes of longer noncoding RNAs were shown to function by every possible means-acting catalytically, sensing physiological states through adoption of complex secondary and tertiary structures, or using their primary sequences for recognition of target sites. The many recently discovered classes of small noncoding RNAs, generally less than 35 nucleotides in length, most often exert their effects by guiding regulatory complexes to targets via base-pairing. With the ability to analyze the RNA products of the genome in ever greater depth, it has become clear that the universe of noncoding RNAs may extend far beyond the boundaries we had previously imagined. Thus, as much as the Symposium highlighted exciting progress in the field, it also revealed how much farther we must go to understand fully the biological impact of noncoding RNAs.

摘要

第71届冷泉港定量生物学研讨会颂扬了调控RNA在从细菌到哺乳动物等多种生物系统中日益繁多且不断扩展的作用。显而易见,非编码RNA正经历复兴,几乎在每个细胞过程中都有其参与的报道。先前已知的较长非编码RNA类别被证明通过各种可能的方式发挥作用——催化作用、通过采用复杂的二级和三级结构感知生理状态,或利用其一级序列识别靶位点。最近发现的许多类别小非编码RNA,通常长度小于35个核苷酸,大多通过碱基配对引导调控复合物作用于靶标来发挥其效应。随着对基因组RNA产物进行更深入分析的能力不断提升,很明显非编码RNA的世界可能远远超出我们先前想象的界限。因此,尽管研讨会突出了该领域令人兴奋的进展,但也揭示出我们要全面理解非编码RNA的生物学影响还有很长的路要走。

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