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首页> 外文期刊>Eukaryotic cell >Physiologic Expression of the Candida albicans Pescadillo Homolog Is Required for Virulence in a Murine Model of Hematogenously Disseminated Candidiasis
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Physiologic Expression of the Candida albicans Pescadillo Homolog Is Required for Virulence in a Murine Model of Hematogenously Disseminated Candidiasis

机译:白色念珠菌Pescadillo同系物的生理表达是血源性传播念珠菌病小鼠模型中的毒力所必需的。

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Morphogenetic conversions contribute to the pathogenesis of Candida albicans invasive infections. Many studies to date have convincingly demonstrated a link between filamentation and virulence; however, relatively little is known regarding the role of the filament-to-yeast transition during the pathogenesis of invasive candidiasis. We previously identified the C. albicans pescadillo homolog (PES1) as essential during yeast growth and growth of lateral yeast on hyphae but not during hyphal growth. Furthermore, we demonstrated that PES1 is required for virulence in vivo in a Galleria mellonella larva model of candidiasis. Here, we have used a regulatable tetO-PES1/pes1 strain to assess the contribution of C. albicans PES1 to pathogenesis in the commonly used and clinically relevant murine model of hematogenously disseminated candidiasis. Our results indicate that a physiologically controlled level of PES1 expression is required for full virulence in this animal model, with virulence defects observed both when PES1 is overexpressed and and when it is depleted. The pathogenetic defect of cells depleted of PES1 is not due to a general growth defect, as demonstrated by the fact that PES1-depleted cells still kill Caenorhabditis elegans as efficiently as the wild type due to hyphal outgrowth through worm tissues. Our results suggest a critical role of lateral yeast growth in the ability of C. albicans to normally proliferate within tissues, as well as a pivotal role for Pes1 in the normal developmental cycle of C. albicans within the mammalian host during infection.
机译:形态发生转换有助于白色念珠菌侵袭性感染的发病机理。迄今为止,许多研究已令人信服地证明了丝状体和毒力之间的联系。然而,在侵染性念珠菌病的发病过程中,从细丝向酵母菌转变的作用了解得很少。我们先前确定白色念珠菌同源物( PES1 )是酵母生长期间和菌丝侧生酵母生长过程中必不可少的部分,而在菌丝生长过程中却没有。此外,我们证明了在念珠菌病的梅勒内拉幼虫模型中, PES1 是体内体内毒性所必需的。在这里,我们使用可调节的 tetO-PES1 / pes1 菌株来评估白色念珠菌 PES1 在常用和血源性念珠菌病的临床相关鼠模型。我们的结果表明, PES1 表达的生理控制水平是此动物模型中完全毒力所必需的,当 PES1 过表达和耗尽时都观察到毒力缺陷。耗尽 PES1 的细胞的致病性缺陷并非归因于一般的生长缺陷,这一事实表明,耗尽 PES1 的细胞仍然能像野生动物一样有效地杀死秀丽隐杆线虫。类型是由于通过蠕虫组织产生的菌丝。我们的研究结果表明侧酵母生长在白色念珠菌正常在组织内增殖的能力中的关键作用,以及Pes1在感染过程中哺乳动物宿主内白色念珠菌正常发育周期中的关键作用。

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