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首页> 外文期刊>Molecular Immunology >Early gene Broad complex plays a key role in regulating the immune response triggered by ecdysone in the Malpighian tubules of Drosophila melanogaster
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Early gene Broad complex plays a key role in regulating the immune response triggered by ecdysone in the Malpighian tubules of Drosophila melanogaster

机译:早期基因Broad复合体在调节果蝇Malpighian小管中蜕皮激素触发的免疫反应中起关键作用

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摘要

In insects, humoral response to injury is accomplished by the production of antimicrobial peptides (AMPs) which are secreted in the hemolymph to eliminate the pathogen. Drosophila malpighian tubules (MTs), however, are unique immune organs that show constitutive expression of AMPs even in unchallenged conditions and the onset of immune response is developmental stage dependent. Earlier reports have shown ecdysone positively regulates immune response after pathogenic challenge however, a robust response requires prior potentiation by the hormone. Here we provide evidence to show that MTs do not require prior potentiation with ecdysone hormone for expression of AMPs and they respond to ecdysone very fast even without immune challenge, although the different AMPs Diptericin, Cecropin, Attacin, Drosocin show differential expression in response to ecdysone. We show that early gene Broad complex (BR-C) could be regulating the IMD pathway by activating Relish and physically interacting with it to activate AMPs expression. BR-C depletion from Malpighian tubules renders the flies susceptible to infection. We also show that in MTs ecdysone signaling is transduced by EcR-B1 and B2. In the absence of ecdysone signaling the IMD pathway associated genes are down regulated and activation and translocation of transcription factor Relish is also affected. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在昆虫中,对伤害的体液反应是通过产生在淋巴中分泌的抗菌肽(AMP)来消除病原体来实现的。但是,果蝇马尔福氏小管(MTs)是独特的免疫器官,即使在不受挑战的条件下也能显示AMP的组成型表达,并且免疫应答的发生与发育阶段有关。较早的报道表明,蜕皮激素可在病原体攻击后积极调节免疫反应,但是,强烈的反应需要事先通过激素增强。在这里,我们提供证据表明MT不需要预先用蜕皮激素来增强AMP的表达,即使没有免疫攻击,它们对蜕皮激素的反应也非常快,尽管不同的AMPs Diptericin,Cecropin,Attacin,Drosocin表现出对蜕皮激素的差异表达。我们表明,早期基因广泛复合体(BR-C)可能通过激活Relish并与其进行物理相互作用以激活AMPs表达来调节IMD途径。 Malpighian肾小管的BR-C耗竭使果蝇易于感染。我们还显示在蜕皮激素蜕皮激素信号转导由EcR B1和B2。在没有蜕皮激素信号传导的情况下,IMD途径相关基因被下调,转录因子Relish的激活和易位也受到影响。 (C)2015 Elsevier Ltd.保留所有权利。

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