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首页> 外文期刊>The international journal of developmental biology >The SUMO-targeted ubiquitin ligase, Dgrn, is essential for Drosophila innate immunity
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The SUMO-targeted ubiquitin ligase, Dgrn, is essential for Drosophila innate immunity

机译:Sumo-靶向的泛素连接酶DGRN,对于果蝇天生的免疫性至关重要

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The ability of metazoans to combat pathogenic infection involves both systemic and local responses to the invading pathogens. Ubiquitin and SUMO pathways molecularly regulate the response to infection, immune signaling and gene expression. Here, we report that Degringolade (Dgrn, CG10981), a SUMO-targeted ubiquitin ligase connecting the two pathways, is essential for the innate immunity response in Drosophila. dgrnDK null and heterozygous mutant adult flies are severely immune-compromised and succumb rapidly to both pathogenic bacteria and fungi infections. The sensitivity to infection stems from the inability to produce multiple anti-microbial peptides, and transcriptional analyses suggest that the overexpression of Dgrn enhances the transcriptional output of the NF-kappa B related Toll and immune deficiency (IMD)-pathways. Moreover, expression of Dgrn alleviated the inhibitory impact of the cytoplasmic NF-kappa B inhibitor Cactus and the nuclear corepressor Groucho/TLE (Gro). Additionally, we found that Dgrn is required for the local regenerative response of the mid-gut following infection. Upon oral infection, dgrn mutant flies fail to activate the Delta-Notch pathway in stem cells and enteroblasts, and are unable to regenerate and replace the damaged and dying enterocytes. Interestingly, the ubiquitin-specific protease CG8334 (dUSP32/ dUSP11) antagonizes Dgrn activity in the gut, and halving the dose of CG8334 restores Delta-Notch signaling and rescues the lethality observed in dgrn mutants. Collectively, our data suggest that Dgrn is essential for both systemic and local tissue response to infection.
机译:美唑烷对抗致病感染的能力涉及系统性和局部对入侵病原体的反应。泛素和Sumo途径分子调节对感染,免疫信号和基因表达的反应。在这里,我们报告说,Dropingolade(DGRN,CG10981),一种连接两种途径的Sumo-靶向的泛素连接酶,对于果蝇中的先天免疫反应是必不可少的。 DGRNDK NULL和杂合突变体成人苍蝇严重免疫损害,迅速屈服于致病菌和真菌感染。感染的敏感性源于无法产生多种抗微生物肽,并且转录分析表明DGRN的过表达增强了NF-κB相关疾病和免疫缺陷(IMD)的转录输出。此外,DGRN的表达减轻了细胞质NF-Kappa B抑制剂仙人掌和核心压板GROUCHO / TLE(GAG)的抑制作用。此外,我们发现在感染后中肠的局部再生响应需要DGRN。在口腔感染时,DGRN突变蝇未能在干细胞和肠溶细胞中激活δ-缺口,并且不能再生并替换受损和染色的肠细胞。有趣的是,泛素特异性蛋白酶CG8334(Dusp32 / Dusp11)拮抗肠道中的DGRN活性,并将CG8334的剂量减少恢复Delta-Notch信号传导,并拯救在DGRN突变体中观察到的致命性。集体,我们的数据表明DGRN对于系统性和局部组织对感染的反应至关重要。

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