Friedrich Miescher Institute for Biomedical Research, Basel, Switzerland.
PLoS Genet. 2010 May 6;6(5):e1000937. doi: 10.1371/journal.pgen.1000937.
S6 kinases (S6Ks) act to integrate nutrient and insulin signaling pathways and, as such, function as positive effectors in cell growth and organismal development. However, they also have been shown to play a key role in limiting insulin signaling and in mediating the autophagic response. To identify novel regulators of S6K signaling, we have used a Drosophila-based, sensitized, gain-of-function genetic screen. Unexpectedly, one of the strongest enhancers to emerge from this screen was the nuclear receptor (NR), Drosophila hormone receptor 3 (DHR3), a critical constituent in the coordination of Drosophila metamorphosis. Here we demonstrate that DHR3, through dS6K, also acts to regulate cell-autonomous growth. Moreover, we show that the ligand-binding domain (LBD) of DHR3 is essential for mediating this response. Consistent with these findings, we have identified an endogenous DHR3 isoform that lacks the DBD. These results provide the first molecular link between the dS6K pathway, critical in controlling nutrient-dependent growth, and that of DHR3, a major mediator of ecdysone signaling, which, acting together, coordinate metamorphosis.
S6 激酶(S6Ks)作用于整合营养和胰岛素信号通路,因此作为细胞生长和生物发育的正效应物发挥作用。然而,它们也被证明在限制胰岛素信号和介导自噬反应方面发挥着关键作用。为了鉴定 S6K 信号的新调节因子,我们使用了基于果蝇的、敏感的、功能获得性遗传筛选。出乎意料的是,该筛选中出现的最强增强子之一是核受体(NR)果蝇激素受体 3(DHR3),它是协调果蝇变态的关键成分。在这里,我们证明 DHR3 通过 dS6K 也作用于调节细胞自主生长。此外,我们表明 DHR3 的配体结合域(LBD)对于介导这种反应是必不可少的。与这些发现一致,我们已经鉴定出一种缺乏 DBD 的内源性 DHR3 同工型。这些结果提供了 dS6K 途径与 DHR3 之间的第一个分子联系,dS6K 途径在控制营养依赖性生长方面至关重要,而 DHR3 是蜕皮激素信号的主要介质,它们共同协调变态。