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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >In vivo commitment to yeast cotranscriptional splicing is sensitive to transcription elongation mutants.
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In vivo commitment to yeast cotranscriptional splicing is sensitive to transcription elongation mutants.

机译:体内对酵母共转录剪接的承诺对转录延伸突变体敏感。

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摘要

Spliceosome assembly in the budding yeast Saccharomyces cerevisiae was recently shown to occur at the site of transcription. However, evidence for cotranscriptional splicing as well as for coupling between transcription and splicing is still lacking. Using modifications of a previously published chromatin immunoprecipitation (ChIP) assay, we show that cotranscriptional splicing occurs approximately 1 kb after transcription of the 3' splice site (3'SS). This pathway furthermore protects most intron-containing nascent transcripts from the effects of cleavage by an intronic hammerhead ribozyme. This suggests that a high percentage of introns are recognized cotranscriptionally. This observation led us to screen a small deletion library for strains that sensitize a splicing reporter to ribozyme cleavage. Characterization of the Deltamud2 strain indicates that the early splicing factor Mud2p functions with U1 snRNP to form a cross-intron bridging complex on nascent pre-mRNA. The complex helps protect the transcript from ribozyme-mediated destruction and suggests an intron-definition event early in the spliceosome assembly process. The transcription elongation mutant strains Deltadst1 and Deltapaf1 show different cotranscriptional splicing phenotypes, suggesting that different transcription pathways differentially impact the efficiency of nascent intron definition.
机译:最近显示出芽状酵母酿酒酵母中的剪接体组装发生在转录位点。但是,仍然缺少用于共转录剪接以及转录与剪接之间偶联的证据。使用以前发布的染色质免疫沉淀(ChIP)分析的修改,我们显示共转录剪接发生在3'剪接位点(3'SS)转录后约1 kb。该途径进一步保护大多数含内含子的初生转录物免受内含子锤头状核酶的切割作用。这表明高百分比的内含子被共转录识别。该观察结果使我们筛选了一个小的缺失文库,以寻找使剪接报告基因对核酶裂解敏感的菌株。 Deltamud2菌株的表征表明,早期剪接因子Mud2p与U1 snRNP共同作用,在新生的pre-mRNA上形成交叉内含子桥接复合体。该复合物有助于保护转录本免受核酶介导的破坏,并在剪接体组装过程的早期提示内含子定义事件。转录延伸突变株Deltadst1和Deltapaf1显示不同的共转录剪接表型,表明不同的转录途径差异地影响新生内含子定义的效率。

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