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本文引用的文献

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Recombinant Mycobacterium bovis bacillus Calmette-Guérin (BCG) expressing mouse IL-18 augments Th1 immunity and macrophage cytotoxicity.表达小鼠白细胞介素-18的重组牛分枝杆菌卡介苗(BCG)增强Th1免疫和巨噬细胞细胞毒性。
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SKN7 of Candida albicans: mutant construction and phenotype analysis.白色念珠菌的SKN7:突变体构建与表型分析。
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Thiol peroxidase is critical for virulence and resistance to nitric oxide and peroxide in the fungal pathogen, Cryptococcus neoformans.硫醇过氧化物酶对于真菌病原体新型隐球菌的毒力以及对一氧化氮和过氧化物的抗性至关重要。
Mol Microbiol. 2004 Mar;51(5):1447-58. doi: 10.1111/j.1365-2958.2004.03921.x.
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Enzymes that counteract nitrosative stress promote fungal virulence.抵抗亚硝化应激的酶促进真菌致病性。
Curr Biol. 2003 Nov 11;13(22):1963-8. doi: 10.1016/j.cub.2003.10.029.
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Role of alternative oxidase gene in pathogenesis of Cryptococcus neoformans.交替氧化酶基因在新型隐球菌致病机制中的作用。
Infect Immun. 2003 Oct;71(10):5794-802. doi: 10.1128/IAI.71.10.5794-5802.2003.
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Scedosporium prolificans osteomyelitis in an immunocompetent child treated with voriconazole and caspofungin, as well as locally applied polyhexamethylene biguanide.用伏立康唑和卡泊芬净以及局部应用聚六亚甲基双胍治疗免疫功能正常儿童的多育赛多孢菌骨髓炎。
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Regulation of the transcriptional response to oxidative stress in fungi: similarities and differences.真菌中对氧化应激转录反应的调控:异同点
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The Cryptococcus neoformans MAP kinase Mpk1 regulates cell integrity in response to antifungal drugs and loss of calcineurin function.新型隐球菌丝裂原活化蛋白激酶Mpk1在抗真菌药物反应及钙调神经磷酸酶功能丧失时调节细胞完整性。
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Characterization of Cu,Zn superoxide dismutase (SOD1) gene knock-out mutant of Cryptococcus neoformans var. gattii: role in biology and virulence.新型隐球菌格特变种铜锌超氧化物歧化酶(SOD1)基因敲除突变体的特性:在生物学和毒力中的作用
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新型隐球菌中SKN7同源物的鉴定与表征

Identification and characterization of an SKN7 homologue in Cryptococcus neoformans.

作者信息

Wormley F L, Heinrich G, Miller J L, Perfect J R, Cox G M

机构信息

Department of Medicine/Division of Infectious Diseases, Duke University Medical Center, Duke South, Stead Bldg., Box 3353, Durham, NC 27710, USA.

出版信息

Infect Immun. 2005 Aug;73(8):5022-30. doi: 10.1128/IAI.73.8.5022-5030.2005.

DOI:10.1128/IAI.73.8.5022-5030.2005
PMID:16041017
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1201254/
Abstract

Cryptococcus neoformans is an encapsulated fungal pathogen that primarily infects the central nervous system of immunocompromised individuals, causing life-threatening meningoencephalitis. The capacity of C. neoformans to subvert host defenses and disseminate by intracellular parasitism of alveolar macrophages in the immune-compromised host has led to studies to evaluate genes associated with C. neoformans resistance to oxidative stress. In the present study, we identify and characterize a C. neoformans homologue to SKN7, a transcription factor in Saccharomyces cerevisiae that regulates the oxidative stress response, cell cycle, and cell wall biosynthesis. To examine the contribution of SKN7 in the pathogenesis of fungal infections, we created skn7 mutants via targeted disruption. The skn7 mutants were observed to be more susceptible to reactive oxygen species in vitro and were significantly less virulent than the wild-type strain and a reconstituted strain as measured by cumulative survival in the mouse inhalational model. The Skn7 protein was observed to be important for expression of thioredoxin reductase in response to oxidative challenge. Interestingly, skn7 mutants were also observed to flocculate following in vitro culture, a novel phenotype not observed in skn7 mutants derived from other fungi. These findings demonstrate that SKN7 contributes to the virulence composite but is not required for pathogenicity in C. neoformans. In addition, flocculation of C. neoformans skn7 mutants suggests a potentially unique function of SKN7 not previously observed in other cryptococcal strains or skn7 mutants.

摘要

新型隐球菌是一种有荚膜的真菌病原体,主要感染免疫功能低下个体的中枢神经系统,引发危及生命的脑膜脑炎。新型隐球菌能够破坏宿主防御机制,并通过在免疫功能低下宿主的肺泡巨噬细胞内寄生进行传播,这促使人们开展研究以评估与新型隐球菌抗氧化应激相关的基因。在本研究中,我们鉴定并表征了新型隐球菌中与酿酒酵母转录因子SKN7同源的基因,SKN7可调节氧化应激反应、细胞周期和细胞壁生物合成。为了研究SKN7在真菌感染发病机制中的作用,我们通过靶向破坏创建了skn7突变体。在体外观察到skn7突变体对活性氧更敏感,并且在小鼠吸入模型中通过累积存活率测量,其毒力明显低于野生型菌株和重组菌株。观察到Skn7蛋白对于氧化应激刺激下硫氧还蛋白还原酶的表达很重要。有趣的是,体外培养后还观察到skn7突变体发生絮凝,这是在源自其他真菌的skn7突变体中未观察到的新表型。这些发现表明SKN7有助于构成毒力,但在新型隐球菌致病过程中并非必需。此外,新型隐球菌skn7突变体的絮凝表明SKN7具有潜在独特功能,这在其他隐球菌菌株或skn7突变体中未曾观察到。