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Medium from γ-irradiated Escherichia coli bacteria stimulates a unique immune response in Drosophila cells

机译:γ辐照的大肠杆菌细菌培养基刺激果蝇细胞中独特的免疫反应

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摘要

It is well known that γ-irradiated, non-dividing bacteria can elicit potent immune responses in mammals. Compared to traditional heat or chemical inactivation of microbes, c-irradiation likely preserves metabolic activity and antigenic features to a larger extent. We have previously shown that antimicrobial peptides are induced in Drosophila by peptidoglycan fragments secreted into the medium of exponentially growing bacterial cultures. In this study, we γ-irradiated Escherichia coli cells at a dose that halted cell division. The temporal synthesis and release of peptidoglycan fragments were followed as well as the potential of bacterial supernatants to induce immune responses in Drosophila S2 cells. We demonstrate that peptidoglycan synthesis continues for several days post irradiation and that monomeric peptidoglycan is shed into the medium. Whole transcriptome analysis revealed a strong immune response against the bacterial medium. The response to medium taken directly post irradiation shows a large overlap to that of peptidoglycan. Medium from prolonged bacterial incubation does, however, stimulate a selective set of immune genes. A shift towards a stress response was instead observed with a striking induction of several heat shock proteins. Our findings suggest that γ-irradiated bacteria release elicitors that stimulate a novel response in Drosophila.
机译:众所周知,γ辐照的非分裂细菌可以在哺乳动物中引发有效的免疫反应。与传统的热灭活或化学灭活微生物相比,c辐射可能在更大程度上保留了代谢活性和抗原性。我们以前已经表明,果蝇中的抗菌肽是由分泌到指数生长细菌培养物培养基中的肽聚糖片段诱导的。在这项研究中,我们以停止细胞分裂的剂量γ照射了大肠杆菌细胞。跟踪肽聚糖片段的暂时合成和释放以及细菌上清液在果蝇S2细胞中诱导免疫反应的潜力。我们证明了肽聚糖的合成在辐照后持续了几天,并且单体肽聚糖掉入了培养基中。全转录组分析揭示了针对细菌培养基的强免疫反应。辐照后直接对培养基的反应表明与肽聚糖有很大的重叠。但是,长时间细菌培养产生的培养基确实会刺激一组选择性的免疫基因。相反,观察到向着应激反应的转变,其中有几种热激蛋白的明显诱导。我们的发现表明,γ射线辐照的细菌释放出激发果蝇新反应的引发剂。

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