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Interaction of Cryptococcus neoformans Extracellular Vesicles with the Cell Wall

机译:新型隐球菌细胞外囊泡与细胞壁的相互作用

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Cryptococcus neoformans produces extracellular vesicles containing a variety of cargo, including virulence factors. To become extracellular, these vesicles not only must be released from the plasma membrane but also must pass through the dense matrix of the cell wall. The greatest unknown in the area of fungal vesicles is the mechanism by which these vesicles are released to the extracellular space given the presence of the fungal cell wall. Here we used electron microscopy techniques to image the interactions of vesicles with the cell wall. Our goal was to define the ultrastructural morphology of the process to gain insights into the mechanisms involved. We describe single and multiple vesicle-leaving events, which we hypothesized were due to plasma membrane and multivesicular body vesicle origins, respectively. We further utilized melanized cells to “trap” vesicles and visualize those passing through the cell wall. Vesicle size differed depending on whether vesicles left the cytoplasm in single versus multiple release events. Furthermore, we analyzed different vesicle populations for vesicle dimensions and protein composition. Proteomic analysis tripled the number of proteins known to be associated with vesicles. Despite separation of vesicles into batches differing in size, we did not identify major differences in protein composition. In summary, our results indicate that vesicles are generated by more than one mechanism, that vesicles exit the cell by traversing the cell wall, and that vesicle populations exist as a continuum with regard to size and protein composition.
机译:新型隐球菌产生的细胞外囊泡中含有多种毒力因子。为了变成细胞外,这些囊泡不仅必须从质膜释放,而且必须穿过细胞壁的致密基质。在真菌囊泡区域中最大的未知数是在存在真菌细胞壁的情况下将这些囊泡释放到细胞外空间的机制。在这里,我们使用电子显微镜技术来成像囊泡与细胞壁的相互作用。我们的目标是定义过程的超微结构形态,以深入了解所涉及的机制。我们描述了单个和多个囊泡离开事件,我们假设这分别是由于质膜和多囊泡体囊泡起源。我们进一步利用黑色素化的细胞来“捕获”囊泡,并可视化那些穿过细胞壁的囊泡。囊泡大小根据囊泡在单次释放还是多次释放事件中是否离开细胞质而有所不同。此外,我们分析了不同的囊泡种群的囊泡大小和蛋白质组成。蛋白质组学分析使已知与囊泡相关的蛋白质数量增加了两倍。尽管将囊泡分成大小不同的批次,但我们并未发现蛋白质组成的主要差异。总而言之,我们的结果表明,囊泡是通过一种以上的机制生成的,囊泡通过横穿细胞壁而离开细胞,并且囊泡的数量在大小和蛋白质组成方面是连续的。

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