Department of Biochemistry, University of Oxford, Oxford OX1 3QU, United Kingdom;
Genes Dev. 2013 Sep 15;27(18):2025-38. doi: 10.1101/gad.221960.113.
We uncovered a novel role for the spliceosome in regulating mRNA expression levels that involves splicing coupled to RNA decay, which we refer to as spliceosome-mediated decay (SMD). Our transcriptome-wide studies identified numerous transcripts that are not known to have introns but are spliced by the spliceosome at canonical splice sites in Saccharomyces cerevisiae. Products of SMD are primarily degraded by the nuclear RNA surveillance machinery. We demonstrate that SMD can significantly down-regulate mRNA levels; splicing at canonical splice sites in the bromodomain factor 2 (BDF2) transcript reduced transcript levels roughly threefold by generating unstable products that are rapidly degraded by the nuclear surveillance machinery. Regulation of BDF2 mRNA levels by SMD requires Bdf1, a functionally redundant Bdf2 paralog that plays a role in recruiting the spliceosome to the BDF2 mRNA. Interestingly, mutating BDF2 5' splice site and branch point consensus sequences partially suppresses the bdf1Δ temperature-sensitive phenotype, suggesting that maintaining proper levels of Bdf2 via SMD is biologically important. We propose that the spliceosome can also repress protein-coding gene expression by promoting nuclear turnover of spliced RNA products and provide an insight for coordinated regulation of Bdf1 and Bdf2 levels in the cell.
我们揭示了剪接体在调节 mRNA 表达水平方面的一个新作用,该作用涉及与 RNA 降解偶联的剪接,我们称之为剪接体介导的降解(SMD)。我们的全转录组研究鉴定了许多以前不知道具有内含子但在酿酒酵母中通过剪接体在典型剪接位点被剪接的转录本。SMD 的产物主要被核 RNA 监测机制降解。我们证明 SMD 可以显著下调 mRNA 水平;在溴结构域因子 2(BDF2)转录本中的典型剪接位点进行剪接通过产生不稳定的产物,从而将转录本水平降低约三倍,这些产物会被核监测机制迅速降解。SMD 对 BDF2 mRNA 水平的调节需要 Bdf1,Bdf1 是 Bdf2 的功能冗余同源物,在将剪接体募集到 BDF2 mRNA 中发挥作用。有趣的是,突变 BDF2 的 5'剪接位点和分支点保守序列部分抑制了 bdf1Δ 温度敏感表型,这表明通过 SMD 维持适当的 Bdf2 水平在生物学上是很重要的。我们提出剪接体还可以通过促进剪接 RNA 产物的核周转来抑制蛋白质编码基因的表达,并为细胞中 Bdf1 和 Bdf2 水平的协调调节提供了一个见解。