首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >The putative flippase Apt1 is required for intracellular membrane architecture and biosynthesis of polysaccharide and lipids in Cryptococcus neoformans
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The putative flippase Apt1 is required for intracellular membrane architecture and biosynthesis of polysaccharide and lipids in Cryptococcus neoformans

机译:预备的韧皮酶APT1是细胞内膜建筑和多糖和脂质在碱性膜中的生物合成的脂肪酶

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摘要

Flippases are responsible for the asymmetric distribution of phospholipids in biological membranes. In the encapsulated fungal pathogen Cryptococcus neoformans, the putative flippase Apt1 is an important regulator of polysaccharide secretion and pathogenesis in mice by unknown mechanisms. In this study, we analyzed the role of C. neoformans Apt1 in intracellular membrane architecture and synthesis of polysaccharide and lipids. Analysis of wild type (WT), apt1 Delta (mutant) and apt1 Delta::APT1 (complemented) strains by transmission electron microscopy revealed that deletion of APT1 resulted in the formation of irregular vacuoles. Disorganization of vacuolar membranes in apt1 Delta cells was accompanied by a significant increase in the amounts of intra-vacuolar and pigment-containing vesicles. Quantitative immunogold labeling of C. neoformans cells with a monoclonal antibody raised to a major capsular component suggested impaired polysaccharide synthesis. APT1 deletion also affected synthesis of phosphatidylserine, phosphatidylethanolamine, inositolphosphoryl ceramide, glucosylceramide and ergosterylglycoside. These results reveal novel functions of Apt1 and are in agreement with the notion that this putative flippase plays an important role in the physiology of C. neoformans.
机译:唾液负责生物膜中磷脂的不对称分布。在封装的真菌病原体加密球菌中,推定的韧皮酶APT1是通过未知机制通过未知机制的多糖分泌和小鼠发病机制的重要调节因子。在这项研究中,我们分析了C. Neoformans APT1在细胞内膜结构和多糖和脂质的合成中的作用。通过透射电子显微镜分析野生型(WT),APT1δ(突变体)和APT1(互补)菌株显示APT1的缺失导致不规则的空泡形成。在APT1δ细胞中的静脉膜的紊乱伴随着真空内 - 真空和含颜料囊泡的量的显着增加。具有单克隆抗体的C. Neoformans细胞的定量免疫标记升高到主要囊组分的多糖合成损害。 APT1缺失还影响了磷脂酰丝氨酸,磷脂酰乙醇胺,碘磷酸氨基甲胺,硫代糖苷和埃替糖基甘氨酸苷的合成。这些结果揭示了APT1的新功能,并与该推定的唾液酶在C.Neoformans的生理学中发挥着重要作用的观点一致。

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