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引用次数: 117

摘要

本文综述了白色念珠菌细胞壁外表面甘露聚糖蛋白(肽)的位置和粘附活性,以及甘露聚糖蛋白的甘露聚糖部分。甘露糖蛋白的大分子位于最外表面,无疑是一种由蛋白质和甘露糖等多种粘附分子组成的强粘附素。甘露糖蛋白可分为两类,高分子量的甘露糖蛋白(260 kDa)和低分子量的甘露糖蛋白(50-66 kDa),两者都由相似的甘露糖和具有不同粘附特异性的不同蛋白质或肽组成。甘露蛋白在功能上可分为凝集素样蛋白和精氨酸-甘氨酸-天冬氨酸(RGD)配体识别蛋白两类。后一种蛋白进一步细分为两类,CR2/ cr3样蛋白和结合细胞外基质(ECM)蛋白的蛋白。白色念珠菌细胞表面的疏水性影响其对上皮细胞的粘附。影响酵母细胞表面疏水性的细胞表面甘露蛋白的糖基化程度影响白色念珠菌对上皮细胞的粘附。疏水蛋白可能具有低水平的糖基化,糖基化的变化可能决定细胞表面疏水蛋白区域的暴露。抗原6的血清型特异性低聚糖(甘露聚糖部分的戊糖或己糖)已被证明对上皮细胞具有显著的粘附能力,与抗原因子5相关的甘露聚糖存在于血清型A和血清型B中,对组织巨噬细胞具有粘附活性。白色念珠菌的蛋白粘连蛋白在菌丝形态上表现较好。这表明,上述几种白色念珠菌的粘附分子似乎互补地利用多种粘附机制。
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Molecular bases of adhesion of Candida albicans.

The purpose of this review is to focus on the location and the adhesion activity of the protein (peptide) and the mannan moieties of the mannoprotein in the outer surface of the Candida albicans cell wall. A macromolecule of the mannoprotein located on the outermost surface is undoubtedly a strong adhesin comprising several adhesion molecules including protein and mannan. Mannoproteins can be divided into two classes, higher molecular weight peptidomannans (260 kDa) and lower molecular weight mannoproteins (50-66 kDa), both of which consist of similar mannans and disparate proteins or peptides which have distinct adhesion specificities. The protein moiety of mannoprotein can be divided functionally into two groups, lectin-like proteins and proteins recognizing arginine-glycine-aspartic acid (RGD) ligands. The latter proteins are further subdivided into two groups, CR2/CR3-like proteins and proteins binding extracellular matrix (ECM) proteins. Hydrophobicity of the cell surface of C. albicans influences adhesion of the organisms to epithelial cells. Degree of glycosylation of cell surface mannoproteins that affect yeast cell surface hydrophobicity affects adhesion of C. albicans to epithelial cells. The hydrophobic proteins may have low levels of glycosylation, and changes in glycosylation may determine exposure of hydrophobic protein regions at the cell surface. The serotype A-specific oligosaccharide of antigen 6 (pentaose or hexaose of mannan moiety) has been shown to exhibit marked adhesion ability for epithelial cells, and mannotetraose related to antigenic factor 5 which is present in both serotypes A and B showed adhesive activity for tissue macrophages. Proteinoceous adhesins of C. albicans are expressed preferably on the mycelial form. It is suggested that several of the adhesion molecules of C. albicans described above appear to complementarily utilize multiple adhesion mechanisms.

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