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Identification of the galactosyltransferase of Cryptococcus neoformans involved in the biosynthesis of basidiomycete-type glycosylinositolphosphoceramide

机译:新型隐球菌的半乳糖基转移酶的鉴定与担子菌型糖基肌醇磷酸神经酰胺的生物合成有关

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摘要

The pathogenic fungus Cryptococcus neoformans synthesizes a complex family of glycosylinositolphosphoceramide (GIPC) structures. These glycosphingolipids (GSLs) consist of mannosylinositolphosphoceramide (MIPC) extended by β1-6-linked galactose, a unique structure that has to date only been identified in basidiomycetes. Further extension by up to five mannose residues and a branching xylose has been described. In this study, we identified and determined the gene structure of the enzyme Ggt1, which catalyzes the transfer of a galactose residue to MIPC. Deletion of the gene in C. neoformans resulted in complete loss of GIPCs containing galactose, a phenotype that could be restored by the episomal expression of Ggt1 in the deletion mutant. The entire annotated open reading frame, encoding a C-terminal GT31 galactosyltransferase domain and a large N-terminal domain of unknown function, was required for complementation. Notably, this gene does not encode a predicted signal sequence or transmembrane domain. The demonstration that Ggt1 is responsible for the transfer of a galactose residue to a GSL thus raises questions regarding the topology of this biosynthetic pathway and the function of the N-terminal domain. Phylogenetic analysis of the GGT1 gene shows conservation in hetero- and homobasidiomycetes but no homologs in ascomycetes or outside of the fungal kingdom.
机译:病原真菌新隐球菌合成了糖基肌醇磷酸神经酰胺(GIPC)结构的复杂家族。这些糖鞘脂(GSL)由甘露糖基肌醇磷酸神经酰胺(MIPC)延伸,并由β1-6连接的半乳​​糖延伸,这种独特的结构迄今仅在担子菌中得以鉴定。已经描述了进一步延伸多达五个甘露糖残基和支链木糖。在这项研究中,我们确定并确定了Ggt1酶的基因结构,该酶催化将半乳糖残基转移至MIPC。在新孢梭菌中删除该基因导致含半乳糖的GIPC完全丧失,该表型可通过缺失突变体中Ggt1的游离表达恢复。互补需要完整的带注释的开放阅读框,其编码一个C端GT31半乳糖基转移酶结构域和一个未知功能的大N端结构域。值得注意的是,该基因不编码预测的信号序列或跨膜结构域。因此,关于Ggt1负责将半乳糖残基转移到GSL的论证引起了关于这种生物合成途径的拓扑结构和N末端域功能的疑问。对GGT1基因的系统进化分析显示,在杂种和同种担子菌中均具有保守性,而在子囊菌中或真菌界之外则没有同系物。

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