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Cryptococcus extracellular vesicles properties and their use as vaccine platforms

机译:隐性球菌细胞外囊性能及其用作疫苗平台

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摘要

Whereas extracellular vesicle (EV) research has become commonplace in different biomedical fields, this field of research is still in its infancy in mycology. Here we provide a robust set of data regarding the structural and compositional aspects of EVs isolated from the fungal pathogenic species Cryptococcus neoformans, C. deneoformans and C. deuterogattii. Using cutting‐edge methodological approaches including cryogenic electron microscopy and cryogenic electron tomography, proteomics, and flow cytometry, we revisited cryptococcal EV features and suggest a new EV structural model, in which the vesicular lipid bilayer is covered by mannoprotein‐based fibrillar decoration, bearing the capsule polysaccharide as its outer layer. About 10% of the EV population is devoid of fibrillar decoration, adding another aspect to EV diversity. By analysing EV protein cargo from the three species, we characterized the typical Cryptococcus EV proteome. It contains several membrane‐bound protein families, including some Tsh proteins bearing a SUR7/PalI motif. The presence of known protective antigens on the surface of Cryptococcus EVs, resembling the morphology of encapsulated virus structures, suggested their potential as a vaccine. Indeed, mice immunized with EVs obtained from an acapsular C. neoformans mutant strain rendered a strong antibody response in mice and significantly prolonged their survival upon C. neoformans infection.
机译:虽然细胞外囊泡(EV)研究在不同的生物医学领域变得普遍,但该研究领域仍处于Mycology的初期。在这里,我们提供了一种关于从真菌致病性物种隐菌菌,C. deneoformans和C. deuterogattii分离的EVS的结构和组成方面的稳健数据。使用包括低温电子显微镜和低温电子断层扫描,蛋白质组学和流式细胞术的尖端方法方法,我们重新审视了密集的电力转换功能,并提出了一种新的EV结构模型,其中植物蛋白的纤维状装饰,轴承覆盖了囊泡脂质双层的抗体化学型。胶囊多糖作为其外层。大约10%的EV人口缺乏纤维状装饰,增加了另一个方面到EV多样性。通过从三种物种分析EV蛋白质货物,我们表征了典型的Cryptococcus EV蛋白质组。它含有几个膜结合的蛋白质家族,包括带有SUR7 / PALI主题的一些TSH蛋白质。在封闭性病毒结构的形态上存在已知的已知保护性抗原,类似于包封病毒结构的形态,表明它们作为疫苗的潜力。实际上,用由短暂的C.Neoformans突变菌株获得的EVS免疫的小鼠使小鼠的强烈抗体反应具有强烈的抗体反应,并显着延长了对新族裔的感染的生存。

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