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Cryptococcus neoformans cryoultramicrotomy and vesicle fractionation reveals an intimate association between membrane lipids and glucuronoxylomannan

机译:新型隐球菌冷冻超薄切片术和囊泡分离揭示了膜脂质和葡糖醛酸甘露聚糖之间的密切联系

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摘要

Cryptococcus neoformans is an encapsulated pathogenic fungus. The cryptococcal capsule is composed of polysaccharides and is necessary for virulence. It has been previously reported that glucuronoxylomannan (GXM), the major capsular component, is synthesized in cytoplasmic compartments and transported to the extracellular space in vesicles, but knowledge on the organelles involved in polysaccharide synthesis and traffic is extremely limited. In this paper we report the GXM distribution in C. neoformans cells sectioned by cryoultramicrotomy and visualized by transmission electron microscopy (TEM), and polysaccharide immunogold staining. Cryosections of fungal cells showed high preservation of intracellular organelles and cell wall structure. Incubation of cryosections with an antibody to GXM revealed that cytoplasmic structures associated to vesicular compartments and reticular membranes are in close proximity to the polysaccharide. GXM was generally found in association with the membrane of intracellular compartments and within different layers of the cell wall. Analysis of extracellular fractions from cryptococcal supernatants by transmission electron microscopy in combination with serologic, chromatographic and spectroscopic methods revealed fractions containing GXM and lipids. These results indicate an intimate association of GXM and lipids in both intracellular and extracellular spaces consistent with polysaccharide synthesis and transport in membrane-associated structures.
机译:新型隐球菌是一种包囊的致病真菌。隐球菌胶囊由多糖组成,是毒性所必需的。先前已经报道,主要的荚膜成分葡糖醛酸氧甘露聚糖(GXM)在细胞质区室中合成并运输至囊泡中的细胞外空间,但是关于涉及多糖合成和运输的细胞器的知识极为有限。在本文中,我们报告了通过冷冻超薄切片术切片并通过透射电子显微镜(TEM)和多糖免疫金染色显示的新孢子虫细胞中GXM的分布。真菌细胞的切片显示细胞内细胞器和细胞壁结构的高度保存。将冷冻切片与GXM抗体一起孵育后发现,与囊泡腔室和网状膜相关的胞质结构与多糖非常接近。通常发现GXM与细胞内隔室的膜以及细胞壁的不同层内相关。通过透射电子显微镜结合血清学,色谱法和光谱法对隐球菌上清液的细胞外部分进行分析,结果显示含有GXM和脂质的部分。这些结果表明在细胞内和细胞外空间中GXM和脂质的紧密结合与多糖合成和在膜相关结构中的运输一致。

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