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Role of Drosophila IKKγ in a Toll-independent antibacterial immune response

机译:果蝇IKKγ在不依赖Toll的抗菌免疫反应中的作用

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We have generated, by ethylmethane sulfonate mutagenesis, loss-of-function mutants in the Drosophila homolog of the mammalian I-kB kinase (IKK) complex component IKKγ (also called NEMO). Our data show that Drosophila IKKγ is required for the Relish-dependent immune induction of the genes encoding antibacterial peptides and for resistance to infections by Escherichia coli. However, it is not required for the Toll-DIF-dependent antifungal host defense. The results indicate distinct control mechanisms of the Rel-like transactivators DIF and Relish in the Drosophila innate immune response and show that Drosophila Toll does not signal through a IKKγ-dependent signaling complex. Thus, in contrast to the vertebrate inflammatory response, IKKγ is required for the activation of only one immune signaling pathway in Drosophila.
机译:我们已经通过甲烷磺酸乙酯诱变在果蝇I-kB激酶(IKK)复杂成分IKKγ(也称为NEMO)的果蝇同源物中产生了功能丧失的突变体。我们的数据表明,果蝇IKKγ是Relish依赖型免疫诱导编码抗菌肽的基因以及抵抗大肠杆菌感染所必需的。但是,对于依赖Toll-DIF的抗真菌宿主防御系统并不需要它。结果表明果蝇先天性免疫反应中Rel样反式激活因子DIF和Relish的独特控制机制,并表明果蝇Toll不会通过IKKγ依赖性信号复合物发出信号。因此,与脊椎动物的炎症反应相反,果蝇中只有一个免疫信号通路的激活需要IKKγ。

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