首页> 外文OA文献 >\u3ci\u3eCandida albicans ISW2 Regulates\u3c/i\u3e Chlamydospore Suspensor Cell Formation and Virulence \u3ci\u3eIn Vivo\u3c/i\u3e in a Mouse Model of Disseminated Candidiasis
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\u3ci\u3eCandida albicans ISW2 Regulates\u3c/i\u3e Chlamydospore Suspensor Cell Formation and Virulence \u3ci\u3eIn Vivo\u3c/i\u3e in a Mouse Model of Disseminated Candidiasis

机译:\ u3ci \ u3eCandida albicans IsW2规范\ u3c / i \ u3e 厚垣孢子细胞形成 和毒性\ u3ci \ u3eIn Vivo \ u3c / i \ u3e在鼠标模型中 传播的念珠菌病

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摘要

Formation of chlamydospores by Candida albicans was an established medical diagnostic test to confirm candidiasis before the molecular era. However, the functional role and pathological relevance of this in vitro morphological transition to pathogenesis in vivo remain unclear. We compared the physical properties of in vitro-induced chlamydospores with those of large C. albicans cells purified by density gradient centrifugation from Candida infected mouse kidneys. The morphological and physical properties of these cells in kidneys of mice infected intravenously with wild type C. albicans confirmed that chlamydospores can form in infected kidneys. A previously reported chlamydospore-null Δisw2/ Δisw2 mutant was used to investigate its role in virulence and chlamydospore induction. Virulence of the Δisw2/Δisw2 mutant strain was reduced 3.4-fold compared to wild type C. albicans or the ISW2 reconstituted strain. Altered host inflammatory reactions to the null mutant further indicate that ISW2 is a virulence factor in C. albicans. ISW2 deletion abolished chlamydospore formation within infected mouse kidneys, whereas the reconstituted strain restored chlamydospore formation in kidneys. Under chlamydospore inducing conditions in vitro, deletion of ISW2 significantly delayed chlamydospore formation, and those late induced chlamydospores lacked associated suspensor cells while attaching laterally to hyphae via novel spore-hypha septa. Our findings establish the induction of chlamydospores by C. albicans during mouse kidney colonization. Our results indicate that ISW2 is not strictly required for chlamydospores formation but is necessary for suspensor cell formation. The importance of ISW2 in chlamydospore morphogenesis and virulence may lead to additional insights into morphological differentiation and pathogenesis of C. albicans in the host microenvironment.
机译:白色念珠菌形成衣原体孢子是一种成熟的医学诊断测试,旨在确认分子时代之前的念珠菌病。但是,这种体外形态转变为体内发病机理的功能作用和病理相关性尚不清楚。我们比较了体外诱导的衣原体孢子和通过密度梯度离心法从念珠菌感染的小鼠肾脏中纯化的大型白色念珠菌细胞的物理特性。这些细胞在用野生型白色念珠菌静脉感染的小鼠肾脏中的形态和物理特性证实,衣原体孢子可在感染的肾脏中形成。使用先前报道的衣原体空Δisw2/Δisw2突变体来研究其在毒力和衣原体诱导中的作用。与野生型白色念珠菌或ISW2重组菌株相比,Δisw2/Δisw2突变株的毒力降低了3.4倍。对无效突变体改变的宿主炎症反应进一步表明,ISW2是白色念珠菌的致病因子。 ISW2缺失消除了感染小鼠肾脏内的衣原体的形成,而重组菌株恢复了肾脏中的衣原体的形成。在体外的衣原体诱导条件下,ISW2的缺失显着延迟了衣原体的形成,而那些后期诱导的衣原体缺乏相关的悬浮细胞,而通过新的孢子-菌丝间隔侧向附着在菌丝上。我们的发现建立了白色念珠菌在小鼠肾脏定植过程中对衣原体的诱导。我们的结果表明,ISW2不是衣原体孢子形成的严格要求,而是悬浮细胞形成的必需条件。 ISW2在衣原体孢子的形态发生和毒力中的重要性可能导致对宿主微环境中白色念珠菌的形态分化和发病机理的更多见解。

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