首页> 外文期刊>Eukaryotic cell >The Small GTPase RacA Mediates Intracellular Reactive Oxygen Species Production, Polarized Growth, and Virulence in the Human Fungal Pathogen Aspergillus fumigatus
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The Small GTPase RacA Mediates Intracellular Reactive Oxygen Species Production, Polarized Growth, and Virulence in the Human Fungal Pathogen Aspergillus fumigatus

机译:小型GTPase RacA介导人类真菌病原体烟曲霉中细胞内活性氧的产生,极化生长和毒力。

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Aspergillus fumigatus is the predominant mold pathogen in immunocompromised patients. In this study, we present the first characterization of the small GTPase RacA in A. fumigatus. To gain insight into the function of racA in the growth and pathogenesis of A. fumigatus, we constructed a strain that lacks a functional racA gene. The ΔracA strain showed significant morphological defects, including a reduced growth rate and abnormal conidiogenesis on glucose minimal medium. In the ΔracA strain, apical dominance in the leading hyphae is lost and, instead, multiple axes of polarity emerge. Intriguingly, superoxide production at the hyphal tips was reduced by 25% in the ΔracA strain. Treatment of wild-type hyphae with diphenylene iodonium, an inhibitor of NADPH oxidase, resulted in phenotypes similar to that of the ΔracA strain. These data suggest that ΔracA strain phenotypes may be due to a reduction or alteration in the production of reactive oxygen species. Most surprisingly, despite these developmental and growth abnormalities, the ΔracA strain retained at least wild-type virulence in both an insect model and two immunologically distinct murine models of invasive pulmonary aspergillosis. These results demonstrate that in vitro growth phenotypes do not always correlate with in vivo virulence and raise intriguing questions about the role of RacA in Aspergillus virulence.
机译:烟曲霉是免疫功能低下患者的主要霉菌病原体。在这项研究中,我们提出了烟曲霉中小GTPase RacA的第一个特征。为了深入了解 racA 在烟曲霉生长和发病机理中的功能,我们构建了一个缺少功能性 racA 基因的菌株。 Δ racA 菌株表现出明显的形态缺陷,包括生长速度降低和在葡萄糖基本培养基上的异常子生。在Δ racA 菌株中,失去了前菌丝的顶端优势,而是出现了多个极性轴。有趣的是,Δ racA 菌株在菌丝尖端的超氧化物产生降低了25%。用NADPH氧化酶抑制剂联苯亚碘鎓处理野生型菌丝,其表型与Δ racA 菌株相似。这些数据表明Δ racA 菌株的表型可能是由于活性氧的产生减少或改变。最令人惊讶的是,尽管存在这些发育和生长异常,Δ racA 菌株在昆虫模型和两种免疫学上不同的鼠科侵袭性肺曲霉病模型中都至少保留了野生型毒力。这些结果表明体外生长表型并不总是与体内毒力相关,并且引起了有关RacA在曲霉菌毒力中作用的有趣问题。

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