首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >The Putative RNA Helicase Dbp6p Functionally Interacts With Rpl3p, Nop8p and the Novel trans-acting Factor Rsa3p During Biogenesis of 60S Ribosomal Subunits in Saccharomyces cerevisiae
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The Putative RNA Helicase Dbp6p Functionally Interacts With Rpl3p, Nop8p and the Novel trans-acting Factor Rsa3p During Biogenesis of 60S Ribosomal Subunits in Saccharomyces cerevisiae

机译:在酿酒酵母60S核糖体亚基的生物合成过程中,推定的RNA解旋酶Dbp6p与Rpl3p,Nop8p和新型反式作用因子Rsa3p功能性相互作用

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Ribosome biogenesis requires at least 18 putative ATP-dependent RNA helicases in Saccharomyces cerevisiae . To explore the functional environment of one of these putative RNA helicases, Dbp6p, we have performed a synthetic lethal screen with dbp6 alleles. We have previously characterized the nonessential Rsa1p, whose null allele is synthetically lethal with dbp6 alleles. Here, we report on the characterization of the four remaining synthetic lethal mutants, which reveals that Dbp6p also functionally interacts with Rpl3p, Nop8p, and the so-far-uncharacterized Rsa3p ( r ibo s ome a ssembly 3 ). The nonessential Rsa3p is a predominantly nucleolar protein required for optimal biogenesis of 60S ribosomal subunits. Both Dbp6p and Rsa3p are associated with complexes that most likely correspond to early pre-60S ribosomal particles. Moreover, Rsa3p is co-immunoprecipitated with protA-tagged Dbp6p under low salt conditions. In addition, we have established a synthetic interaction network among factors involved in different aspects of 60S-ribosomal-subunit biogenesis. This extensive genetic analysis reveals that the rsa3 null mutant displays some specificity by being synthetically lethal with dbp6 alleles and by showing some synthetic enhancement with the nop8-101 and the rsa1 null allele.
机译:核糖体生物发生在酿酒酵母中至少需要18个假定的ATP依赖性RNA解旋酶。为了探索这些推定的RNA解旋酶之一Dbp6p的功能环境,我们用dbp6等位基因进行了合成致死筛选。我们以前已经鉴定了非必需Rsa1p,其无效等位基因与dbp6等位基因合成致死。在这里,我们报告了剩余的四个合成致死突变体的特征,该突变体揭示了Dbp6p还与Rpl3p,Nop8p和迄今未表征的Rsa3p功能性相互作用(RNAi的外观为3)。不必要的Rsa3p是60S核糖体亚基最佳生物合成所需的主要核仁蛋白。 Dbp6p和Rsa3p都与最可能对应于60S以前的早期核糖体颗粒的复合物有关。此外,在低盐条件下,Rsa3p与protA标签的Dbp6p共同免疫沉淀。此外,我们已经建立了涉及60S-核糖体-亚基生物发生的不同方面的因素之间的综合相互作用网络。广泛的遗传分析表明,rsa3无效突变体通过与dbp6等位基因合成致死并显示出nop8-101和rsa1无效等位基因的合成增强作用,从而显示出某些特异性。

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