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首页> 外文期刊>BMC Developmental Biology >Expression of Drosophila FOXO regulates growth and can phenocopy starvation
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Expression of Drosophila FOXO regulates growth and can phenocopy starvation

机译:果蝇FOXO的表达调节生长并能造成表型饥饿。

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Background Components of the insulin signaling pathway are important regulators of growth. The FOXO ( f orkhead b ox , sub-group " O ") transcription factors regulate cellular processes under conditions of low levels of insulin signaling. Studies in mammalian cell culture show that activation of FOXO transcription factors causes cell death or cell cycle arrest. The Caenorhabiditis elegans homologue of FOXO, Daf-16, is required for the formation of dauer larvae in response to nutritional stress. In addition, FOXO factors have been implicated in stress resistance and longevity. Results We have identified the Drosophila melanogaster homologue of FOXO (dFOXO), which is conserved in amino acid sequence compared with the mammalian FOXO homologues and Daf-16. Expression of dFOXO during early larval development causes inhibition of larval growth and alterations in feeding behavior. Inhibition of larval growth is reversible upon discontinuation of dFOXO expression. Expression of dFOXO during the third larval instar or at low levels during development leads to the generation of adults that are reduced in size. Analysis of the wings and eyes of these small flies indicates that the reduction in size is due to decreases in cell size and cell number. Overexpression of dFOXO in the developing eye leads to a characteristic phenotype with reductions in cell size and cell number. This phenotype can be rescued by co-expression of upstream insulin signaling components, dPI3K and dAkt, however, this rescue is not seen when FOXO is mutated to a constitutively active form. Conclusions dFOXO is conserved in both sequence and regulatory mechanisms when compared with other FOXO homologues. The establishment of Drosophila as a model for the study of FOXO transcription factors should prove beneficial to determining the biological role of these signaling molecules. The alterations in larval development seen upon overexpression of dFOXO closely mimic the phenotypic effects of starvation, suggesting a role for dFOXO in the response to nutritional adversity. This work has implications in the understanding of cancer and insulin related disorders, such as diabetes and obesity.
机译:背景技术胰岛素信号传导途径的成分是重要的生长调节剂。在低水平胰岛素信号传导的条件下,FOXO(foxkhead box,亚组“ O”)转录因子调节细胞过程。哺乳动物细胞培养物中的研究表明,FOXO转录因子的激活导致细胞死亡或细胞周期停滞。 FOXO的秀丽隐杆线虫同系物Daf-16是响应营养压力而形成的dauer幼虫所必需的。此外,FOXO因子与抗逆性和寿命有关。结果我们已经鉴定出果蝇FOXO(dFOXO)的果蝇同源物,与哺乳动物FOXO同源物和Daf-16相比在氨基酸序列上是保守的。 dFOXO在幼虫早期发育期间的表达引起幼虫生长的抑制和摄食行为的改变。 dFOXO表达中断后,幼虫生长的抑制作用是可逆的。 dFOXO在第三龄幼虫期或发育过程中的低水平表达导致成年个体的体积减小。对这些小苍蝇的机翼和眼睛的分析表明,大小的减少是由于细胞大小和细胞数减少所致。 dFOXO在发育中的眼中过度表达会导致特征性表型,并导致细胞大小和细胞数量减少。可以通过上游胰岛素信号成分dPI3K和dAkt的共表达来挽救这种表型,但是,当FOXO突变为组成型活性形式时,这种挽救作用是看不到的。结论与其他FOXO同系物相比,dFOXO在序列和调控机制上都是保守的。果蝇作为研究FOXO转录因子的模型的建立应该证明对确定这些信号分子的生物学作用是有益的。 dFOXO过量表达时看到的幼虫发育变化紧密模拟饥饿的表型效应,表明dFOXO在营养逆境中发挥作用。这项工作对理解癌症和胰岛素相关疾病(例如糖尿病和肥胖症)具有重要意义。

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