Gunderson Felizza Q, Johnson Tracy L
Department of Biology, Molecular Biology Section, University of California San Diego, La Jolla, California, USA.
PLoS Genet. 2009 Oct;5(10):e1000682. doi: 10.1371/journal.pgen.1000682. Epub 2009 Oct 16.
In the last several years, a number of studies have shown that spliceosome assembly and splicing catalysis can occur co-transcriptionally. However, it has been unclear which specific transcription factors play key roles in coupling splicing to transcription and the mechanisms through which they act. Here we report the discovery that Gcn5, which encodes the histone acetyltransferase (HAT) activity of the SAGA complex, has genetic interactions with the genes encoding the heterodimeric U2 snRNP proteins Msl1 and Lea1. These interactions are dependent upon the HAT activity of Gcn5, suggesting a functional relationship between Gcn5 HAT activity and Msl1/Lea1 function. To understand the relationship between Gcn5 and Msl1/Lea1, we carried out an analysis of Gcn5's role in co-transcriptional recruitment of Msl1 and Lea1 to pre-mRNA and found that Gcn5 HAT activity is required for co-transcriptional recruitment of the U2 snRNP (and subsequent snRNP) components to the branchpoint, while it is not required for U1 recruitment. Although previous studies suggest that transcription elongation can alter co-transcriptional pre-mRNA splicing, we do not observe evidence of defective transcription elongation for these genes in the absence of Gcn5, while Gcn5-dependent histone acetylation is enriched in the promoter regions. Unexpectedly, we also observe Msl1 enrichment in the promoter region for wild-type cells and cells lacking Gcn5, indicating that Msl1 recruitment during active transcription can occur independently of its association at the branchpoint region. These results demonstrate a novel role for acetylation by SAGA in co-transcriptional recruitment of the U2 snRNP and recognition of the intron branchpoint.
在过去几年中,多项研究表明剪接体组装和剪接催化可在转录过程中同时发生。然而,尚不清楚哪些特定转录因子在将剪接与转录偶联中起关键作用以及它们发挥作用的机制。在此,我们报告一项发现,即编码SAGA复合物组蛋白乙酰转移酶(HAT)活性的Gcn5与编码异二聚体U2 snRNP蛋白Msl1和Lea1的基因存在遗传相互作用。这些相互作用依赖于Gcn5的HAT活性,表明Gcn5 HAT活性与Msl1/Lea1功能之间存在功能关系。为了解Gcn5与Msl1/Lea1之间的关系,我们分析了Gcn5在将Msl1和Lea1共转录募集到前体mRNA中的作用,发现Gcn5 HAT活性是将U2 snRNP(及随后的snRNP)组分共转录募集到分支点所必需的,而U1募集则不需要。尽管先前的研究表明转录延伸可改变共转录前体mRNA剪接,但在缺乏Gcn5的情况下,我们未观察到这些基因转录延伸缺陷的证据,而Gcn5依赖性组蛋白乙酰化在启动子区域富集。出乎意料的是,我们还观察到野生型细胞和缺乏Gcn5的细胞的启动子区域中Msl1富集,这表明在活跃转录过程中Msl1的募集可独立于其在分支点区域的结合而发生。这些结果证明了SAGA介导的乙酰化在U2 snRNP共转录募集和内含子分支点识别中的新作用。