PGC-1α integrates insulin signaling with mitochondrial physiology and behavior in a Drosophila model of Fragile X Syndrome

Eliana D. Weisz, Adam R. Fenton, Thomas A. Jongens
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Abstract

Fragile X Syndrome (FXS) is the most prevalent monogenetic form of intellectual disability and autism. Recently, dysregulation of insulin signaling (IS) and aberrations in mitochondrial function have emerged as robust, evolutionarily conserved components of FXS pathophysiology. However, the mechanisms by which altered IS and mitochondrial dysfunction impact behavior in the context of FXS remain elusive. Here, we show that normalization of IS improves mitochondrial volume and function in flies that lack expression of dfmr1, the Drosophila homolog of the causal gene of FXS in humans. Further, we demonstrate that dysregulation of IS underlies diminished expression of the mitochondrial master regulator PGC-1α/Spargel in dfmr1 mutant flies. These results are behaviorally relevant, as we show that pan-neuronal augmentation of PGC-1α/Spargel improves circadian behavior in dfmr1 mutants. Notably, we also show that modulation of PGC-1α/Spargel expression in wild-type flies phenocopies the dfmr1 mutant circadian defect. Taken together, the results presented herein provide a mechanistic link between mitochondrial function and circadian behavior both in FXS pathogenesis as well as more broadly at the interface between metabolism and behavioral output.

Abstract Image

在脆性 X 综合征果蝇模型中,PGC-1α 将胰岛素信号与线粒体生理和行为结合起来
脆性 X 综合征(FXS)是最常见的单基因智力残疾和自闭症。最近,胰岛素信号传导(IS)失调和线粒体功能畸变已成为 FXS 病理生理学中稳健、进化保守的组成部分。然而,胰岛素信号的改变和线粒体功能障碍对 FXS 行为的影响机制仍然难以捉摸。在这里,我们发现在缺乏 dfmr1(果蝇与人类 FXS 病因基因的同源物)表达的果蝇中,IS 正常化能改善线粒体的体积和功能。此外,我们还证明,在 dfmr1 突变体中,线粒体主调节因子 PGC-1α/Spargel 的表达减少是 IS 失调的基础。这些结果与行为相关,因为我们表明,PGC-1α/Spargel 的泛神经元增殖可改善 dfmr1 突变体的昼夜节律行为。值得注意的是,我们还发现,在野生型苍蝇中调节 PGC-1α/Spargel 的表达能使 dfmr1 突变体的昼夜节律缺陷显现出来。综上所述,本文介绍的结果提供了线粒体功能与昼夜节律行为之间的机理联系,既涉及 FXS 的发病机制,也更广泛地涉及新陈代谢与行为输出之间的关系。
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