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首页> 外文期刊>G3: Genes, Genomes, Genetics >Splicing Machinery Facilitates Post-Transcriptional Regulation by FBFs and Other RNA-Binding Proteins in Caenorhabditis elegans Germline
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Splicing Machinery Facilitates Post-Transcriptional Regulation by FBFs and Other RNA-Binding Proteins in Caenorhabditis elegans Germline

机译:剪接机制通过秀丽隐杆线虫生殖细胞中的BFF和其他RNA结合蛋白促进转录后调控

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Genetic interaction screens are an important approach for understanding complex regulatory networks governing development. We used a genetic interaction screen to identify cofactors of [FBF-1][1] and [FBF-2][2], RNA-binding proteins that regulate germline stem cell proliferation in Caenorhabditis elegans . We found that components of splicing machinery contribute to FBF activity as splicing factor knockdowns enhance sterility of [fbf-1][1] and [fbf-2][2] single mutants. This sterility phenocopied multiple aspects of loss of fbf function, suggesting that splicing factors contribute to stem cell maintenance. However, previous reports indicate that splicing factors instead promote the opposite cell fate, namely, differentiation. We explain this discrepancy by proposing that splicing factors facilitate overall RNA regulation in the germline. Indeed, we find that loss of splicing factors produces synthetic phenotypes with a mutation in another RNA regulator, [FOG-1][3], but not with a mutation in a gene unrelated to posttranscriptional regulation ( [dhc-1][4] ). We conclude that inefficient pre-mRNA splicing may interfere with multiple posttranscriptional regulatory events, which has to be considered when interpreting results of genetic interaction screens. [1]: http://www.wormbase.org/db/get?name=WBGene00001401;class=Gene [2]: http://www.wormbase.org/db/get?name=WBGene00001402;class=Gene [3]: http://www.wormbase.org/db/get?name=WBGene00001481;class=Gene [4]: http://www.wormbase.org/db/get?name=WBGene00000962;class=Gene
机译:遗传相互作用筛选是了解控制发展的复杂调控网络的重要方法。我们使用遗传相互作用筛选来鉴定[FBF-1] [1]和[FBF-2] [2]的辅因子,它们是调节秀丽隐杆线虫生殖细胞干细胞增殖的RNA结合蛋白。我们发现,剪接机制的成分有助于FBF活性,因为剪接因子敲低可增强[fbf-1] [1]和[fbf-2] [2]单个突变体的不育性。这种不育表现出fbf功能丧失的多个方面,表明剪接因子有助于干细胞的维持。然而,先前的报道表明剪接因子反而促进了相反的细胞命运,即分化。我们通过提出剪接因子促进种系中总体RNA调控来解释这种差异。确实,我们发现剪接因子的缺失产生了合成的表型,该表型在另一种RNA调节剂[FOG-1] [3]中发生了突变,但在与转录后调控无关的基因中发生了突变([dhc-1] [4] )。我们得出的结论是,低效的mRNA前剪接可能会干扰多个转录后调控事件,在解释遗传相互作用筛选结果时必须考虑这一点。 [1]:http://www.wormbase.org/db/get?name=WBGene00001401;class=Gene [2]:http://www.wormbase.org/db/get?name=WBGene00001402;class=Gene [3]:http://www.wormbase.org/db/get?name=WBGene00001481;class=Gene [4]:http://www.wormbase.org/db/get?name=WBGene00000962;class=Gene

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