Wellcome Trust Centre for Cell Biology, University of Edinburgh, King's Buildings, Edinburgh EH9 3JR, UK.
Mol Cell. 2010 Nov 24;40(4):582-93. doi: 10.1016/j.molcel.2010.11.005.
In eukaryotic cells, there is evidence for functional coupling between transcription and processing of pre-mRNAs. To better understand this coupling, we performed a high-resolution kinetic analysis of transcription and splicing in budding yeast. This revealed that shortly after induction of transcription, RNA polymerase accumulates transiently around the 3' end of the intron on two reporter genes. This apparent transcriptional pause coincides with splicing factor recruitment and with the first detection of spliced mRNA and is repeated periodically thereafter. Pausing requires productive splicing, as it is lost upon mutation of the intron and restored by suppressing the splicing defect. The carboxy-terminal domain of the paused polymerase large subunit is hyperphosphorylated on serine 5, and phosphorylation of serine 2 is first detected here. Phosphorylated polymerase also accumulates around the 3' splice sites of constitutively expressed, endogenous yeast genes. We propose that transcriptional pausing is imposed by a checkpoint associated with cotranscriptional splicing.
在真核细胞中,有证据表明前体 mRNA 的转录和加工之间存在功能偶联。为了更好地理解这种偶联,我们对芽殖酵母中转录和剪接进行了高分辨率的动力学分析。这表明,在转录诱导后不久,RNA 聚合酶在两个报告基因的内含子 3' 端附近短暂积累。这种明显的转录暂停与剪接因子的募集以及拼接 mRNA 的首次检测同时发生,并在此后周期性地重复。暂停需要有效的剪接,因为内含子的突变会导致其丢失,而剪接缺陷的抑制则会恢复其功能。暂停聚合酶大亚基羧基末端结构域上丝氨酸 5 的磷酸化程度很高,并且这里首次检测到丝氨酸 2 的磷酸化。磷酸化聚合酶也在组成型表达的内源性酵母基因的 3' 剪接位点处积累。我们提出,转录暂停是由与共转录剪接相关的检查点施加的。