在小鼠播散性而非阴道念珠菌病模型中,ERG2和ERG24是正常液泡生理和白色念珠菌致病性所必需的。

Eukaryotic Cell Pub Date : 2015-10-01 Epub Date: 2015-07-31 DOI:10.1128/EC.00116-15
Arturo Luna-Tapia, Brian M Peters, Karen E Eberle, Morgan E Kerns, Timothy P Foster, Luis Marrero, Mairi C Noverr, Paul L Fidel, Glen E Palmer
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引用次数: 26

摘要

几种重要的抗真菌药物,包括唑类,通过阻断麦角甾醇的生物合成而起作用。最近有报道说,在流行的人类病原体白色念珠菌中,氮唑引起真菌液泡的大量破坏。这是重要的,因为正常的空泡功能需要支持白色念珠菌的致病性。本研究考察了抑制麦角甾醇生物合成后期步骤的morpholine抗真菌药对白色念珠菌液泡完整性的影响。研究发现,分别编码C-8甾醇异构酶和C-14甾醇还原酶的ERG2或ERG24基因的过表达均可抑制白念珠菌对morpholines的敏感性。此外,erg2Δ/Δ和erg24Δ/Δ突变体均对morpholines过敏。这些数据与morpholines的抗真菌活性一致,这取决于同时抑制Erg2p和Erg24p。erg2Δ/Δ和erg24Δ/Δ白色念珠菌菌株的液泡形态异常,且积累了大量的弱碱醌,与对照菌株相比,液泡酸化程度增强。在播散性念珠菌病小鼠模型中,这两种突变体在极化菌丝生长方面都表现出明显的缺陷,并且是无毒的。令人惊讶的是,在阴道念珠菌病的小鼠模型中,两种突变体都在小鼠体内大量定植,并诱导了与对照组相似的致病反应。因此,虽然单独靶向Erg2p或Erg24p可能为播散性念珠菌病提供潜在的有效治疗,但它可能不是治疗阴道感染的有效策略。讨论了靶向这些酶的药物作为辅助治疗的潜在价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

ERG2 and ERG24 Are Required for Normal Vacuolar Physiology as Well as Candida albicans Pathogenicity in a Murine Model of Disseminated but Not Vaginal Candidiasis.

ERG2 and ERG24 Are Required for Normal Vacuolar Physiology as Well as Candida albicans Pathogenicity in a Murine Model of Disseminated but Not Vaginal Candidiasis.

ERG2 and ERG24 Are Required for Normal Vacuolar Physiology as Well as Candida albicans Pathogenicity in a Murine Model of Disseminated but Not Vaginal Candidiasis.

ERG2 and ERG24 Are Required for Normal Vacuolar Physiology as Well as Candida albicans Pathogenicity in a Murine Model of Disseminated but Not Vaginal Candidiasis.

Several important classes of antifungal agents, including the azoles, act by blocking ergosterol biosynthesis. It was recently reported that the azoles cause massive disruption of the fungal vacuole in the prevalent human pathogen Candida albicans. This is significant because normal vacuolar function is required to support C. albicans pathogenicity. This study examined the impact of the morpholine antifungals, which inhibit later steps of ergosterol biosynthesis, on C. albicans vacuolar integrity. It was found that overexpression of either the ERG2 or ERG24 gene, encoding C-8 sterol isomerase or C-14 sterol reductase, respectively, suppressed C. albicans sensitivity to the morpholines. In addition, both erg2Δ/Δ and erg24Δ/Δ mutants were hypersensitive to the morpholines. These data are consistent with the antifungal activity of the morpholines depending upon the simultaneous inhibition of both Erg2p and Erg24p. The vacuoles within both erg2Δ/Δ and erg24Δ/Δ C. albicans strains exhibited an aberrant morphology and accumulated large quantities of the weak base quinacrine, indicating enhanced vacuolar acidification compared with that of control strains. Both erg mutants exhibited significant defects in polarized hyphal growth and were avirulent in a mouse model of disseminated candidiasis. Surprisingly, in a mouse model of vaginal candidiasis, both mutants colonized mice at high levels and induced a pathogenic response similar to that with the controls. Thus, while targeting Erg2p or Erg24p alone could provide a potentially efficacious therapy for disseminated candidiasis, it may not be an effective strategy to treat vaginal infections. The potential value of drugs targeting these enzymes as adjunctive therapies is discussed.

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来源期刊
Eukaryotic Cell
Eukaryotic Cell 生物-微生物学
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期刊介绍: Eukaryotic Cell (EC) focuses on eukaryotic microbiology and presents reports of basic research on simple eukaryotic microorganisms, such as yeasts, fungi, algae, protozoa, and social amoebae. The journal also covers viruses of these organisms and their organelles and their interactions with other living systems, where the focus is on the eukaryotic cell. Topics include: - Basic biology - Molecular and cellular biology - Mechanisms, and control, of developmental pathways - Structure and form inherent in basic biological processes - Cellular architecture - Metabolic physiology - Comparative genomics, biochemistry, and evolution - Population dynamics - Ecology
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