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The Purine Synthesis Gene Prat2 Is Required for Drosophila Metamorphosis as Revealed by Inverted-Repeat-Mediated RNA Interference

机译:嘌呤合成基因Prat2是果蝇变态所必需的如通过反向重复介导的RNA干扰所揭示。

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摘要

PRAT (phosphoribosylamidotransferase; E.C. 2.4.2.14) catalyzes the first reaction in de novo purine nucleotide biosynthesis. In Drosophila melanogaster, the Prat and Prat2 genes are both highly conserved with PRAT sequences from prokaryotes and eukaryotes. However, Prat2 organization and expression during development is different from Prat. We used RNA interference (RNAi) to knock down expression of both Prat and Prat2 to investigate their functions. Using the GAL4–UAS system, Prat RNAi driven by Act5c–GAL4 or tubP–GAL4 causes variable pupal lethality (48–100%) and ∼50% female sterility, depending on the transgenic strains and drivers used. This observation agrees with the phenotype previously observed for Prat EMS-induced mutations. Prat2 RNAi driven by Act5C–GAL4 or tubP–GAL4 also results in variable pupal lethality (61–93%) with the different transgenic strains, showing that Prat2 is essential for fly development. However, Prat2 RNAi-induced arrested pupae have a head eversion defect reminiscent of the “cryptocephal” phenotype, whereas Prat RNAi-induced arrested pupae die later as pharate adults. We conclude that Prat2 is required during the prepupal stage while Prat is more important for the pupal stage. In addition, Prat and Prat2 double RNAi results in more severe pupal lethal phenotypes, suggesting that Prat and Prat2 have partially additive functions during Drosophila metamorphosis.
机译:PRAT(磷酸核糖酰胺基转移酶; E.C.2.4.2.14)催化从头嘌呤核苷酸生物合成中的第一反应。在果蝇中,Prat和Prat2基因都与原核生物和真核生物的PRAT序列高度保守。但是,Prat2在开发过程中的组织和表达方式与Prat不同。我们使用RNA干扰(RNAi)来敲低Prat和Prat2的表达以研究其功能。使用GAL4–UAS系统,Act5c–GAL4或tubP–GAL4驱动的Prat RNAi会导致可变的let致死率(48–100%)和〜50%的女性不育性,具体取决于所使用的转基因菌株和驱动程序。该观察结果与先前对Prat EMS诱导的突变观察到的表型一致。由Act5C–GAL4或 tubP–GAL4 驱动的Prat2 RNAi也导致不同转基因菌株的variable致死率可变(61–93%),表明 Prat2 对果蝇至关重要发展。但是, Prat2 RNAi诱导的p具有头部外翻缺陷,让人联想到“隐头”表型,而 Prat RNAi诱导的arrest则在成年后逐渐死亡。我们得出结论,在pu前阶段需要 Prat2 ,而在up期更重要的是 Prat 。此外, Prat和Prat2 双重RNAi导致更严重的p致死表型,提示 Prat Prat2 在果蝇变态过程中具有部分加性功能。

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