Wilusz Jeremy E, Sunwoo Hongjae, Spector David L
Watson School of Biological Sciences, Cold Spring Harbor Laboratory, Cold Spring Harbor, New York 11724, USA.
Genes Dev. 2009 Jul 1;23(13):1494-504. doi: 10.1101/gad.1800909.
Most of the eukaryotic genome is transcribed, yielding a complex network of transcripts that includes tens of thousands of long noncoding RNAs with little or no protein-coding capacity. Although the vast majority of long noncoding RNAs have yet to be characterized thoroughly, many of these transcripts are unlikely to represent transcriptional "noise" as a significant number have been shown to exhibit cell type-specific expression, localization to subcellular compartments, and association with human diseases. Here, we highlight recent efforts that have identified a myriad of molecular functions for long noncoding RNAs. In some cases, it appears that simply the act of noncoding RNA transcription is sufficient to positively or negatively affect the expression of nearby genes. However, in many cases, the long noncoding RNAs themselves serve key regulatory roles that were assumed previously to be reserved for proteins, such as regulating the activity or localization of proteins and serving as organizational frameworks of subcellular structures. In addition, many long noncoding RNAs are processed to yield small RNAs or, conversely, modulate how other RNAs are processed. It is thus becoming increasingly clear that long noncoding RNAs can function via numerous paradigms and are key regulatory molecules in the cell.
大多数真核生物基因组都被转录,产生一个复杂的转录本网络,其中包括数以万计几乎没有或完全没有蛋白质编码能力的长链非编码RNA。尽管绝大多数长链非编码RNA尚未得到充分表征,但其中许多转录本不太可能是转录“噪音”,因为已有大量研究表明,它们具有细胞类型特异性表达、定位于亚细胞区室以及与人类疾病相关联的特性。在此,我们重点介绍了近期的一些研究成果,这些研究确定了长链非编码RNA的众多分子功能。在某些情况下,似乎仅仅是非编码RNA转录这一行为就足以对附近基因的表达产生正向或负向影响。然而,在许多情况下,长链非编码RNA本身发挥着关键的调控作用,而这些作用以前被认为是蛋白质所特有的,例如调节蛋白质的活性或定位以及作为亚细胞结构的组织框架。此外,许多长链非编码RNA会被加工产生小RNA,或者相反,调节其他RNA的加工方式。因此,越来越清楚的是,长链非编码RNA可以通过多种模式发挥作用,并且是细胞中的关键调控分子。