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Long Noncoding RNAs: Molecular Modalities to Organismal Functions.
Annual Review of Biochemistry ( IF 16.6 ) Pub Date : 2020-06-22 , DOI: 10.1146/annurev-biochem-062917-012708
John L Rinn 1 , Howard Y Chang 2, 3
Affiliation  

We have known for decades that long noncoding RNAs (lncRNAs) can play essential functions across most forms of life. The maintenance of chromosome length requires an lncRNA (e.g., hTERC) and two lncRNAs in the ribosome that are required for protein synthesis. Thus, lncRNAs can represent powerful RNA machines. More recently, it has become clear that mammalian genomes encode thousands more lncRNAs. Thus, we raise the question: Which, if any, of these lncRNAs could also represent RNA-based machines? Here we synthesize studies that are beginning to address this question by investigating fundamental properties of lncRNA genes, revealing new insights into the RNA structure–function relationship, determining cis- and trans-acting lncRNAs in vivo, and generating new developments in high-throughput screening used to identify functional lncRNAs. Overall, these findings provide a context toward understanding the molecular grammar underlying lncRNA biology.

中文翻译:


长非编码RNA:生物功能的分子模式。

几十年来,我们已经知道,长的非编码RNA(lncRNA)可以在大多数生命形式中发挥重要作用。维持染色体长度需要蛋白质合成所需的lncRNA(例如hTERC)和核糖体中的两个lncRNA。因此,lncRNA可以代表强大的RNA机器。最近,已经清楚的是,哺乳动物基因组编码了数千种lncRNA。因此,我们提出一个问题:这些lncRNA中的哪一个(如果有的话)也可以代表基于RNA的机器?在这里,我们通过研究lncRNA基因的基本特性,揭示对RNA结构与功能的关系,确定顺式反式的新见解,综合开始研究此问题的研究。作用于体内的lncRNA,并在用于鉴定功能性lncRNA的高通量筛选中产生新进展。总体而言,这些发现为理解lncRNA生物学基础的分子语法提供了背景。

更新日期:2020-06-23
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