首页> 外文期刊>G3: Genes, Genomes, Genetics >Interconnections Between RNA-Processing Pathways Revealed by a Sequencing-Based Genetic Screen for Pre-mRNA Splicing Mutants in Fission Yeast
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Interconnections Between RNA-Processing Pathways Revealed by a Sequencing-Based Genetic Screen for Pre-mRNA Splicing Mutants in Fission Yeast

机译:裂殖酵母中的前mRNA剪接突变体的基于序列的遗传筛选揭示RNA处理途径之间的相互联系。

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Pre-mRNA splicing is an essential component of eukaryotic gene expression and is highly conserved from unicellular yeasts to humans. Here, we present the development and implementation of a sequencing-based reverse genetic screen designed to identify nonessential genes that impact pre-mRNA splicing in the fission yeast Schizosaccharomyces pombe , an organism that shares many of the complex features of splicing in higher eukaryotes. Using a custom-designed barcoding scheme, we simultaneously queried ~3000 mutant strains for their impact on the splicing efficiency of two endogenous pre-mRNAs. A total of 61 nonessential genes were identified whose deletions resulted in defects in pre-mRNA splicing; enriched among these were factors encoding known or predicted components of the spliceosome. Included among the candidates identified here are genes with well-characterized roles in other RNA-processing pathways, including heterochromatic silencing and 3? end processing. Splicing-sensitive microarrays confirm broad splicing defects for many of these factors, revealing novel functional connections between these pathways.
机译:前mRNA剪接是真核基因表达的重要组成部分,并且从单细胞酵母到人类都是高度保守的。在这里,我们介绍了一种基于测序的反向遗传筛选技术的开发和实施,该筛选技术旨在鉴定影响裂变酵母裂殖酵母粟酒裂殖酵母中的前mRNA剪接的非必需基因,该裂殖酵母具有在高级真核生物中剪接的许多复杂特征。使用定制设计的条形码方案,我们同时查询了〜3000个突变菌株对它们对两个内源性pre-mRNA剪接效率的影响。总共鉴定出61个非必需基因,这些基因的缺失导致前mRNA剪接中的缺陷。其中丰富的是编码剪接体的已知或预测成分的因子。在这里鉴定出的候选基因中,包括在其他RNA加工途径中具有明确角色的基因,包括异色沉默和3α?结束处理。剪接敏感的微阵列确认了许多这些因素的广泛剪接缺陷,揭示了这些途径之间的新型功能连接。

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