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Killing of Caenorhabditis elegans by Cryptococcus neoformans as a model of yeast pathogenesis

机译:新型隐球菌杀死酵母线虫作为酵母发病机理的模型

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We found that the well-studied nematode Caenorhabditis elegans can use various yeasts, including Cryptococcus laurentii and Cryptococcus kuetzingii, as a sole source of food, producing similar brood sizes compared with growth on its usual laboratory food source Escherichia coli OP50. C. elegans grown on these yeasts had a life span similar to (C. laurentii) or longer than (C. kuetzingii) those fed on E. coli. However, the human pathogen ic yeast Cryptococcus neoformans killed C. elegans, and the C. neoformans polysaccharide capsule as well as several C. neoformans genes previously shown to be involved in mammalian virulence were also shown to play a role in C. elegans killing. These included genes associated with signal transduction pathways (GPA1, PKA1, PKR1, and RAS1). laccase production (LAC1), and the a mating type. C. neoformans adenine auxotrophs, which are less virulent in mammals, were also less virulent in C. elegans. These results support the model that mammalian pathogenesis of C neoformans may be a consequence of adaptations that have evolved during the interaction of C. neoformans with environmental predators such as free-living nematodes and amoebae and suggest that C. elegans can be used as a simple model host in which C. neoformans pathogenesis can be readily studied.
机译:我们发现,经过充分研究的线虫秀丽隐杆线虫可以使用各种酵母(包括劳氏隐球菌和库氏隐球菌)作为唯一的食物来源,与常规实验室食物来源大肠杆菌OP50的生长相比,它们产生相似的育雏规模。在这些酵母上生长的秀丽隐杆线虫的寿命与饲喂大肠杆菌的秀丽隐杆线虫(C. laurentii)相似,或比(C. kuetzingii)更长。然而,人类病原体酵母新隐隐球菌杀死了秀丽隐杆线虫,并且先前显示出与哺乳动物毒力有关的新隐孢子虫多糖荚膜以及几个新隐孢子虫基因也被证明在秀丽隐杆线虫的杀死中起作用。这些包括与信号转导途径相关的基因(GPA1,PKA1,PKR1和RAS1)。漆酶生产(LAC1),以及配对类型。在哺乳动物中毒性较低的新孢子虫腺嘌呤营养缺陷型在秀丽隐杆线虫中也具有较低的毒性。这些结果支持了这种模型,即哺乳动物新孢子虫的发病机理可能是新孢子虫与环境掠食者(如自由生活的线虫和变形虫)相互作用过程中发生的适应变化的结果,并表明秀丽隐杆线虫可以作为简单的方法使用。可以容易地研究新孢梭菌发病机理的模型宿主。

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