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Calcineurin Governs Thermotolerance and Virulence of Cryptococcus gattii

机译:钙调神经磷酸酶控制加提隐球菌的耐热性和毒性

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摘要

The pathogenic yeast Cryptococcus gattii, which is causing an outbreak in the Pacific Northwest region of North America, causes life-threatening pulmonary infections and meningoencephalitis in healthy individuals, unlike Cryptococcus neoformans, which commonly infects immunocompromised patients. In addition to a greater predilection for C. gattii to infect healthy hosts, the C. gattii genome sequence project revealed extensive chromosomal rearrangements compared with C. neoformans, showing genomic differences between the two Cryptococcus species. We investigated the roles of C. gattii calcineurin in three molecular types: VGIIa (R265), VGIIb (R272), and VGI (WM276). We found that calcineurin exhibits a differential requirement for growth on solid medium at 37°, as calcineurin mutants generated from R265 were more thermotolerant than mutants from R272 and WM276. We demonstrated that tolerance to calcineurin inhibitors (FK506, CsA) at 37° is linked with the VGIIa molecular type. The calcineurin mutants from the R272 background showed the most extensive growth and morphological defects (multivesicle and larger ring-like cells), as well as increased fluconazole susceptibility. Our cellular architecture examination showed that C. gattii and C. neoformans calcineurin mutants exhibit plasma membrane disruptions. Calcineurin in the C. gattii VGII molecular type plays a greater role in controlling cation homeostasis compared with that in C. gattii VGI and C. neoformans H99. Importantly, we demonstrate that C. gattii calcineurin is essential for virulence in a murine inhalation model, supporting C. gattii calcineurin as an attractive antifungal drug target.
机译:致病性酵母加蒂球菌在北美的西北太平洋地区引起暴发,它对健康个体造成威胁生命的肺部感染和脑膜脑炎,而新隐球菌通常会感染免疫功能低下的患者。除了更倾向于感染加提氏梭菌以感染健康宿主外,加提氏梭菌基因组序列项目显示与新形成梭菌相比,染色体重排范围广,显示出两种隐球菌物种之间的基因组差异。我们调查了加迪网状钙调神经磷酸酶在三种分子类型中的作用:VGIIa(R265),VGIIb(R272)和VGI(WM276)。我们发现钙调神经磷酸酶对在37°的固体培养基上生长表现出不同的需求,因为R265产生的钙调神经磷酸酶突变体比R272和WM276的突变体更耐高温。我们证明了对钙调磷酸酶抑制剂(FK506,CsA)在37°的耐受性与VGIIa分子类型有关。 R272背景的钙调神经磷酸酶突变体表现出最广泛的生长和形态缺陷(多囊泡和较大的环状细胞),以及氟康唑敏感性增加。我们的细胞结构检查表明,加的梭菌和新孢子虫钙调神经磷酸酶突变体表现出质膜破坏。与Catti gattii VGI和C. neoformans H99相比,Cattie Gurti VGII分子类型的钙调神经磷酸在控制阳离子稳态中起着更大的作用。重要的是,我们证明了C. gattii钙调神经磷酸酶对于鼠类吸入模型中的毒力至关重要,支持C. gattii钙调神经磷酸酶作为有吸引力的抗真菌药物靶标。

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