Children's Cancer Institute, Lowy Cancer Research Centre, University of New South Wales, Sydney, New South Wales 2052, Australia.
ARC Centre of Excellence in Convergent Bio-Nano Science and Technology, Australian Centre for NanoMedicine, University of New South Wales Australia, Sydney, New South Wales 2052, Australia.
Genome Res. 2022 Aug 25;32(8):1463-1473. doi: 10.1101/gr.276818.122.
The advent of massively parallel sequencing revealed extensive transcription beyond protein-coding genes, identifying tens of thousands of long noncoding RNAs (lncRNAs). Selected functional examples raised the possibility that lncRNAs, as a class, may maintain broad regulatory roles. Expression of lncRNAs is strongly linked with adjacent protein-coding gene expression, suggesting potential -regulatory functions. A more detailed understanding of these regulatory roles may be obtained through careful examination of the precise timing of lncRNA expression relative to adjacent protein-coding genes. Despite the diversity of reported lncRNA regulatory mechanisms, where causal -regulatory relationships exist, lncRNA transcription is expected to precede changes in target gene expression. Using a high temporal resolution RNA-seq time course, we profiled the expression dynamics of several thousand lncRNAs and protein-coding genes in synchronized, transitioning human cells. Our findings reveal that lncRNAs are expressed synchronously with adjacent protein-coding genes. Analysis of lipopolysaccharide-activated mouse dendritic cells revealed the same temporal relationship observed in transitioning human cells. Our findings suggest broad-scale -regulatory roles for lncRNAs are not common. The strong association between lncRNAs and adjacent genes may instead indicate an origin as transcriptional by-products from active protein-coding gene promoters and enhancers.
大规模并行测序的出现揭示了广泛的转录超越蛋白质编码基因,确定了数以万计的长非编码 RNA(lncRNA)。选定的功能示例提出了这样一种可能性,即 lncRNA 作为一类,可能具有广泛的调节作用。lncRNA 的表达与相邻蛋白质编码基因的表达强烈相关,表明潜在的调节功能。通过仔细检查 lncRNA 表达相对于相邻蛋白质编码基因的精确时间,可以更详细地了解这些调节作用。尽管报道的 lncRNA 调节机制具有多样性,但在存在因果调节关系的情况下,lncRNA 的转录预计先于靶基因表达的变化。使用高时间分辨率 RNA-seq 时间过程,我们对同步、过渡的人类细胞中数千个 lncRNA 和蛋白质编码基因的表达动态进行了分析。我们的研究结果表明,lncRNA 与相邻的蛋白质编码基因同步表达。对脂多糖激活的小鼠树突状细胞的分析显示,在过渡的人类细胞中观察到了相同的时间关系。我们的研究结果表明,lncRNA 广泛的调节作用并不常见。lncRNA 与相邻基因之间的强烈关联可能表明它们起源于活跃的蛋白质编码基因启动子和增强子的转录副产物。