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β-12 Oligomannose Adhesin Epitopes Are Widely Distributed over the Different Families of Candida albicans Cell Wall Mannoproteins and Are Associated through both N- and O-Glycosylation Processes

机译:β-12低聚甘露糖粘附素表位广泛分布在白色念珠菌细胞壁甘露糖蛋白的不同家族中并通过N-和O-糖基化过程相关

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摘要

β-1,2-Linked mannosides (β-Mans) are believed to contribute to Candida albicans virulence. The presence of β-Mans has been chemically established for two molecules (phosphopeptidomannan [PPM] and phospholipomannan) that are noncovalently linked to the cell wall, where they correspond to specific epitopes. However, a large number of cell wall mannoproteins (CWMPs) also express β-Man epitopes, although their nature and mode of β-mannosylation are unknown. We therefore used Western blotting to map β-Man epitopes for the different families of mannoproteins gradually released from the cell wall according to their mode of anchorage (soluble, released by dithiothreitol, β-1,3 glucan linked, and β-1,6 glucan linked). Reduction of β-Man epitope expression occurred after chemical and enzymatic deglycosylation of the different cell wall fractions, as well as in a secreted form of Hwp1, a representative of the CWMPs linked by glycosylphosphatidylinositol remnants. Enzyme-linked immunosorbent assay inhibition tests were performed to assess the presence of β-Man epitopes in released oligomannosides. A comparison of the results obtained with CWMPs to the results obtained with PPM and the use of mutants with mutations affecting O and N glycosylation demonstrated that both O glycosylation and N glycosylation participate in the association of β-Mans with the protein moieties of CWMPs. This process, which can alter the function of cell wall molecules and their recognition by the host, is therefore more important and more complex than originally thought, since it differs from the model established previously with PPM.
机译:β-1,2-连接的甘露糖苷(β-Mans)被认为有助于白色念珠菌的致病性。对于两个分子(磷酸肽甘露聚糖[PPM]和磷酸脂甘露聚糖),它们在化学上已经建立了β-Mans的存在,它们与细胞壁非共价连接,它们对应于特定的表位。然而,尽管它们的性质和β-甘露糖基化模式尚不清楚,但大量细胞壁甘露糖蛋白(CWMP)也表达β-Man表位。因此,我们使用蛋白质印迹法针对β-Man表位定位了根据其锚定方式(可溶的,由二硫苏糖醇释放,β-1,3葡聚糖连接和β-1,6释放)从细胞壁逐渐释放的不同甘露蛋白家族。葡聚糖链接)。在不同细胞壁部分进行化学和酶促去糖基化后,β-Man表位的表达降低,并且以Hwp1的分泌形式出现,Hwp1是糖基磷脂酰肌醇残基连接的CWMP的代表。进行了酶联免疫吸附试验抑制试验,以评估释放的寡甘露糖苷中β-Man表位的存在。 CWMPs结果与PPM结果的比较以及突变体影响O和N糖基化的突变的比较表明,O糖基化和N糖基化均参与β-Mans与CWMPs蛋白质部分的缔合。因此,该过程可能会改变细胞壁分子的功能以及宿主对它们的识别,因此,该过程比最初认为的更为重要和复杂,因为它不同于先前使用PPM建立的模型。

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