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A large-scale in vivo RNAi screen to identify genes involved in Notch-mediated follicle cell differentiation and cell cycle switches

机译:大规模体内RNAi筛选以鉴定参与Notch介导的卵泡细胞分化和细胞周期转换的基因

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摘要

During Drosophila oogenesis, follicle cells sequentially undergo three distinct cell-cycle programs: the mitotic cycle, endocycle, and gene amplification. Notch signaling plays a central role in regulating follicle-cell differentiation and cell-cycle switches; its activation is essential for the mitotic cycle/endocycle (M/E) switch. Cut, a linker between Notch signaling and cell-cycle regulators, is specifically downregulated by Notch during the endocycle stage. To determine how signaling pathways coordinate during the M/E switch and to identify novel genes involved in follicle cell differentiation, we performed an in vivo RNAi screen through induced knockdown of gene expression and examination of Cut expression in follicle cells. We screened 2205 RNAi lines and found 33 genes regulating Cut expression during the M/E switch. These genes were confirmed with the staining of two other Notch signaling downstream factors, Hindsight and Broad, and validated with multiple independent RNAi lines. We applied gene ontology software to find enriched biological meaning and compared our results with other publications to find conserved genes across tissues. Specifically, we found earlier endocycle entry in anterior follicle cells than those in the posterior, identified that the insulin-PI3K pathway participates in the precise M/E switch, and suggested Nejire as a cofactor of Notch signaling during oogenesis.
机译:在果蝇卵子发生过程中,卵泡细胞依次经历三个不同的细胞周期程序:有丝分裂周期,内周期和基因扩增。 Notch信号在调节卵泡细胞分化和细胞周期转换中起着重要作用。它的激活对于有丝分裂周期/内周期(M / E)开关至关重要。 Cut是Notch信号传导与细胞周期调节因子之间的连接子,在内循环阶段被Notch特异性下调。为了确定信号交换途径在M / E转换过程中如何协调并鉴定与卵泡细胞分化有关的新基因,我们通过诱导基因表达的敲低和检查卵泡细胞中的Cut表达来进行体内RNAi筛选。我们筛选了2205条RNAi系,并发现了33个在M / E转换过程中调控Cut表达的基因。这些基因已通过其他两个Notch信号下游因子Hindsight和Broad的染色得到证实,并已通过多个独立的RNAi系进行了验证。我们使用基因本体软件来发现丰富的生物学意义,并将我们的结果与其他出版物进行比较,以发现整个组织中的保守基因。具体来说,我们发现前卵泡细胞比后卵泡细胞更早进入内膜周期,确定胰岛素-PI3K途径参与了精确的M / E转换,并暗示Nejire是卵子发生过程中Notch信号转导的辅助因子。

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