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首页> 外文期刊>Virulence. >The virulence of the opportunistic fungal pathogen Aspergillus fumigatus requires cooperation between the endoplasmic reticulum-associated degradation pathway (ERAD) and the unfolded protein response (UPR)
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The virulence of the opportunistic fungal pathogen Aspergillus fumigatus requires cooperation between the endoplasmic reticulum-associated degradation pathway (ERAD) and the unfolded protein response (UPR)

机译:机会性真菌病原体烟曲霉的毒力需要内质网相关降解途径(ERAD)和未折叠蛋白反应(UPR)之间的合作

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The filamentous fungal pathogen Aspergillus fumigatus secretes hydrolytic enzymes to acquire nutrients from host tissues. The production of these enzymes exerts stress on the endoplasmic reticulum (ER), which is alleviated by two stress responses: the unfolded protein response (UPR), which adjusts the protein folding capacity of the ER, and ER-associated degradation (ERAD), which disposes of proteins that fail to fold correctly. In this study, we examined the contribution of these integrated pathways to the growth and virulence of A. fumigatus, focusing on the ERAD protein DerA and the master regulator of the UPR, HacA. A ΔderA mutant grew normally and showed no increase in sensitivity to ER stress. However, expression of the UPR target gene bipA was constitutively elevated in this strain, suggesting that the UPR was compensating for the absence of DerA function. To test this, the UPR was disrupted by deleting the hacA gene. The combined loss of derA and hacA caused a more severe reduction in hyphal growth, antifungal drug resistance and protease secretion than the loss of either gene alone, suggesting that DerA and HacA cooperate to support these functions. Moreover, the ΔderA/ΔhacA mutant was avirulent in a mouse model of invasive aspergillosis, which contrasted the wild type virulence of ΔderA and the reduced virulence of the ΔhacA mutant. Taken together, these data demonstrate that DerA cooperates with the UPR to support the expression of virulence-related attributes of A. fumigatus.
机译:丝状真菌病原体烟曲霉分泌水解酶以从宿主组织中获取营养。这些酶的产生会向内质网(ER)施加压力,可通过两种压力反应缓解:未折叠的蛋白反应(UPR),可调节ER的蛋白折叠能力,以及与ER相关的降解(ERAD),处理无法正确折叠的蛋白质。在这项研究中,我们研究了这些整合途径对烟曲霉生长和毒力的贡献,重点是ERAD蛋白DerA和UPR的主要调节剂HacA。 ΔderA突变体正常生长,对ER应激的敏感性没有增加。但是,UPR靶基因bipA的表达在此菌株中组成性升高,这表明UPR可以补偿DerA功能的缺失。为了测试这一点,通过删除hacA基因破坏了UPR。 derA和hacA的联合损失导致菌丝生长,抗真菌药物耐药性和蛋白酶分泌的减少比单独的任何一个基因的损失更为严重,这表明DerA和HacA协同支持这些功能。此外,在侵袭性曲霉病的小鼠模型中,ΔderA/ΔhacA突变体无毒,这与ΔderA的野生型毒力和ΔhacA突变体的降低的毒力形成对比。总而言之,这些数据表明DerA与UPR合作以支持烟曲霉的毒力相关属性的表达。

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