Department of Genetics, Development, and Cell Biology, Iowa State University, Ames, IA, USA.
Department of Ecology and Evolutionary Biology, Brown University, Providence, RI, USA.
Sci Rep. 2017 Nov 27;7(1):16369. doi: 10.1038/s41598-017-16638-1.
Transcriptional coordination is a vital process contributing to metabolic homeostasis. As one of the key nodes in the metabolic network, the forkhead transcription factor FOXO has been shown to interact with diverse transcription co-factors and integrate signals from multiple pathways to control metabolism, oxidative stress response, and cell cycle. Recently, insulin/FOXO signaling has been implicated in the regulation of insect development via the interaction with insect hormones, such as ecdysone and juvenile hormone. In this study, we identified an interaction between Drosophila FOXO (dFOXO) and the zinc finger transcription factor Kruppel homolog 1 (Kr-h1), one of the key players in juvenile hormone signaling. We found that Kr-h1 mutants show delayed larval development and altered lipid metabolism, in particular induced lipolysis upon starvation. Notably, Kr-h1 physically and genetically interacts with dFOXO in vitro and in vivo to regulate the transcriptional activation of insulin receptor (InR) and adipose lipase brummer (bmm). The transcriptional co-regulation by Kr-h1 and dFOXO may represent a broad mechanism by which Kruppel-like factors integrate with insulin signaling to maintain metabolic homeostasis and coordinate organism growth.
转录协调是促进代谢稳态的重要过程。叉头转录因子 FOXO 作为代谢网络中的关键节点之一,已被证明与多种转录共因子相互作用,并整合来自多个途径的信号,以控制代谢、氧化应激反应和细胞周期。最近的研究表明,胰岛素/FOXO 信号通过与昆虫激素如蜕皮激素和保幼激素的相互作用,参与调节昆虫的发育。在这项研究中,我们鉴定了果蝇 FOXO(dFOXO)与锌指转录因子 Kruppel 同源物 1(Kr-h1)之间的相互作用,后者是保幼激素信号通路的关键因子之一。我们发现 Kr-h1 突变体表现出幼虫发育迟缓,并改变了脂质代谢,特别是在饥饿时诱导脂解。值得注意的是,Kr-h1 在体外和体内与 dFOXO 物理和遗传相互作用,以调节胰岛素受体(InR)和脂肪脂酶 Brummer(bmm)的转录激活。Kr-h1 和 dFOXO 的转录共调节可能代表了一种广泛的机制,即 Kruppel 样因子与胰岛素信号整合,以维持代谢稳态和协调机体生长。