Faille C, Michalski J C, Strecker G, Mackenzie D W, Camus D, Poulain D
Unite 42, Institut National de la Santé et de la Recherche Médicale, Villeneuve d'Ascq, France.
Infect Immun. 1990 Nov;58(11):3537-44. doi: 10.1128/iai.58.11.3537-3544.1990.
To establish a model to study the immunoreactivity of oligosaccharidic structures from the Candida albicans cell wall, we attempted to construct neoglycolipids with these residues by using oligomannosides released after mild acid hydrolysis of the phosphopeptidomannans isolated from yeast forms. From a mixture of manno-oligosaccharides ranging from mannobiose to mannononaose, the structure of a quantitatively major component (mannotriose) was determined to be Man (beta 1-2) Man (beta 1-2) Man alpha by 1H nuclear magnetic resonance analysis. After coupling of the pool of oligosaccharides to a lipid (4-hexadecylaniline), the synthesized molecules were injected into mice and rats. Antibody responses were detected on enzyme-linked immunosorbent assay plates coated with either phosphopeptidomannans or neoglycolipids. The hybrid molecules exhibited both immunogenicity and antigenicity. The kinetics of antibody responses as well as immunofluorescence patterns observed on whole C. albicans cells strongly mimicked results from the immunization of animals with natural antigens. Construction of neoglycolipids could therefore provide an interesting approach to the study of specific oligosaccharides of C. albicans and their recognition by the host immune system.
为建立一个模型来研究白色念珠菌细胞壁寡糖结构的免疫反应性,我们尝试通过使用从酵母形式分离的磷酸肽甘露聚糖经温和酸水解后释放的低聚甘露糖,构建带有这些残基的新糖脂。通过1H核磁共振分析,从甘露二糖到甘露九糖的甘露寡糖混合物中,一种定量主要成分(甘露三糖)的结构被确定为Man(β1-2)Man(β1-2)Manα。将寡糖库与脂质(4-十六烷基苯胺)偶联后,将合成的分子注射到小鼠和大鼠体内。在包被有磷酸肽甘露聚糖或新糖脂的酶联免疫吸附测定板上检测抗体反应。这些杂合分子表现出免疫原性和抗原性。在完整白色念珠菌细胞上观察到的抗体反应动力学以及免疫荧光模式,强烈模拟了用天然抗原免疫动物的结果。因此,新糖脂的构建可为研究白色念珠菌的特定寡糖及其被宿主免疫系统识别提供一种有趣的方法。