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Cas3p Belongs to a Seven-Member Family of Capsule Structure Designer Proteins

机译:Cas3p属于胶囊结构设计器蛋白的七个成员家族

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The polysaccharide capsule is the main virulence factor of the basidiomycetous yeast Cryptococcus neoformans. Four genes (CAP10, CAP59, CAP60, and CAP64) essential for capsule formation have been previously identified, although their roles in the biosynthetic pathway remain unclear. A genetic and bioinformatics approach allowed the identification of six CAP64-homologous genes, named CAS3, CAS31, CAS32, CAS33, CAS34, and CAS35, in the C. neoformans genome. This gene family is apparently specific in a subclass of the basidiomycete fungi. Single as well as double deletions of these genes in all possible combinations demonstrated that none of the CAP64-homologous genes were essential for capsule formation, although the cas35Δ strains displayed a hypocapsular phenotype. The chemical structure of the glucuronomannan (GXM) produced by the CAS family deletants revealed that these genes determined the position and the linkage of the xylose and/or O-acetyl residues on the mannose backbone. Hence, these genes are all involved in assembly of the GXM structure in C. neoformans.
机译:多糖荚膜是新孢子菌酵母隐球菌的主要致病因子。尽管已经确定了胶囊形成所必需的四个基因( CAP10 CAP59 CAP60 CAP64 ),它们在生物合成途径中的作用尚不清楚。遗传和生物信息学方法可鉴定出六个 CAP64 同源基因,分别为 CAS3 CAS31 CAS32 C中的 CAS33 CAS34 CAS35 。新甲虫基因组。该基因家族显然在担子菌真菌的亚类中是特异性的。这些基因在所有可能的组合中的单次或两次缺失都表明, CAP64 同源基因都不是胶囊形成所必需的,尽管cas35Δ菌株表现出低荚膜表型。 CAS 家族缺失者产生的葡糖醛酸甘露聚糖(GXM)的化学结构表明,这些基因决定了木糖和/或 O -乙酰基残基的位置和连接甘露糖主链。因此,这些基因都参与了 C中GXM结构的组装。新甲虫

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