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A polydnavirus-encoded ANK protein has a negative impact on steroidogenesis and development

机译:泛菌病毒编码的ANK蛋白对甾体产生负面影响和发育产生负面影响

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摘要

Polydnaviruses (PDV) are viral symbionts associated with ichneumonid and braconid wasps parasitizing moth larvae, which are able to disrupt the host immune response and development, as well as a number of other physiological pathways. The immunosuppressive role of PDV has been more intensely investigated, while very little is known about the PDV-encoded factors disrupting host development. Here we address this research issue by further expanding the functional analysis of ankyrin genes encoded by the bracovirus associated with Toxoneuron nigriceps (Hymenoptera, Braconidae). In a previous study, using Drosophila melanogaster as experimental model system, we demonstrated the negative impact of TnBVankl impairing the ecdysone biosynthesis by altering endocytic traffic in prothoracic gland cells. With a similar approach here we demonstrate that another member of the viral ank gene family, TnBVank3, does also contribute to the disruption of ecdysone biosynthesis, but with a completely different mechanism. We show that its expression in Drosophila prothoracic gland (PG) blocks the larval-pupal transition by impairing the expression of steroidogenic genes. Furthermore, we found that TnBVank3 affects the expression of genes involved in the insulin/TOR signaling and the constitutive activation of the insulin pathway in the PG rescues the pupariation impairment. Collectively, our data demonstrate that TnBVANK3 acts as a virulence factor by exerting a synergistic and non-overlapping function with TnBVANK1 to disrupt the ecdysone biosynthesis.
机译:聚二伐病(PDV)是与Ichneumonid和Braconid Wasps寄生蛾幼虫相关的病毒共生,其能够破坏宿主免疫反应和发育,以及许多其他生理途径。 PDV的免疫抑制作用更加强烈地研究,虽然有关遭受宿主开发的PDV编码因素很少。在这里,我们通过进一步扩大由托克隆尼龙(Hymenoptera,Braconidae)相关的Bracovirus编码的Ankyrin基因的功能分析来解决这一研究问题。在先前的研究中,使用果蝇黑素转渣作为实验模型系统,我们通过改变妊娠细胞中的内吞交通来证明TNBVANGL损害蜕皮酮生物合成的负面影响。在此处具有类似的方法,我们证明了病毒ANK基因系列TNBVANK3的另一个成员也有助于破坏蜕皮生物合成,但具有完全不同的机制。我们表明,其在果蝇嘌呤腺(PG)中的表达通过损害类化基因的表达来阻止幼虫蛹过渡。此外,我们发现TNBVANK3影响胰岛素/抗体信号传导中所涉及的基因的表达,并且PG中胰岛素途径的组成型活化抵押损伤损伤。集体,我们的数据表明TNBVANK3通过用TNBVANK1施加协同和非重叠功能来破坏蜕皮素生物合成来充当毒力因子。

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