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Four-way regulation of mosquito yolk protein precursor genes by juvenile hormone- ecdysone- nutrient- and insulin-like peptide signaling pathways

机译:幼年激素蜕皮激素营养素和胰岛素样肽信号通路对蚊子卵黄蛋白前体基因的四向调节

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摘要

Anautogenous mosquito females require a meal of vertebrate blood in order to initiate the production of yolk protein precursors by the fat body. Yolk protein precursor gene expression is tightly repressed in a state-of-arrest before blood meal-related signals activate it and expression levels rise rapidly. The best understood example of yolk protein precursor gene regulation is the vitellogenin-A gene (vg) of the yellow fever mosquito Aedes aegypti. Vg-A is regulated by (1) juvenile hormone signaling, (2) the ecdysone-signaling cascade, (3) the nutrient sensitive target-of-rapamycin signaling pathway, and (4) the insulin-like peptide (ILP) signaling pathway. A plethora of new studies have refined our understanding of the regulation of yolk protein precursor genes since the last review on this topic in 2005 (Attardo et al., ). This review summarizes the role of these four signaling pathways in the regulation of vg-A and focuses upon new findings regarding the interplay between them on an organismal level.
机译:自发的蚊子雌性需要一餐脊椎动物的血液,以启动由脂肪体产生的卵黄蛋白前体。在血粉相关信号激活卵黄蛋白前体基因表达之前,卵黄蛋白前体基因表达被严格抑制。卵黄蛋白前体基因调控的最了解的例子是黄热蚊埃及伊蚊的卵黄蛋白原-A基因(vg)。 Vg-A受以下因素调节:(1)少年激素信号传导,(2)蜕皮激素信号传导级联,(3)营养敏感的雷帕霉素靶标信号传导途径和(4)胰岛素样肽(ILP)信号传导途径。自从2005年对卵黄蛋白前体基因进行最后一次综述以来,大量的新研究进一步完善了我们对蛋黄蛋白前体基因调控的理解(Attardo等,)。这篇综述总结了这四个信号通路在调节vg-A中的作用,并着重于关于它们在机体水平上相互作用的新发现。

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