De Jesus Magdia, Chow Siu-Kei, Cordero Radames J B, Frases Susana, Casadevall Arturo
Department of Microbiology and Immunology, Albert Einstein College of Medicine, 1300 Morris Park Ave., Bronx, NY 10461, USA.
Eukaryot Cell. 2010 Jul;9(7):1018-28. doi: 10.1128/EC.00268-09. Epub 2010 Jan 8.
Prior studies have established that the Cryptococcus neoformans capsular polysaccharide component galactoxylomannan (GalXM) manifests serotype-related structural differences that translate into antigenic differences. We analyzed GalXM from acapsular serotype A and D strains by carbohydrate analysis and static and dynamic light scattering to determine mass, effective diameter, polydispersity, and diffusion coefficients. Multiangle laser light scattering showed that GalXM from C. neoformans var. grubii strain cap59 (serotype A) had larger molecular mass (4.21 x 10(6) +/- 0.95 x 10(6) g/mol) and radius of gyration (207 +/- 27 nm) than GalXM from C. neoformans var. neoformans cap67 (serotype D). cap67 GalXM had corresponding values of 0.70 x 10(6) +/- 0.05 x 10(6) g/mol and 120 +/- 22 nm, respectively. The effective diameter for GalXM and polydispersity from the two strains varied depending on temperature and medium growth conditions, indicating that GalXM structure can vary within a strain, depending on its environment. Zeta potential determinations were negative for GalXM from both strains under all conditions, consistent with the recently reported presence of glucuronic acid. These results imply that C. neoformans GalXM, like glucuronoxylomannan, can manifest variety- and growth condition-related variations. Analysis of 16 C. neoformans and 7 Cryptococcus gattii strains with polyclonal antibody to a GalXM strain revealed antigenic similarities among the C. neoformans variety neoformans and grubii strains and no reactivity with C. gattii. As a result of the deleterious effects of GalXM on immune function, structural and antigenic variability between serotypes may translate into differences in immunomodulatory effects.
先前的研究已证实,新型隐球菌荚膜多糖成分半乳甘露聚糖(GalXM)表现出与血清型相关的结构差异,这些差异转化为抗原差异。我们通过碳水化合物分析以及静态和动态光散射对无荚膜血清型A和D菌株的GalXM进行分析,以确定其质量、有效直径、多分散性和扩散系数。多角度激光光散射显示,来自新型隐球菌格鲁比变种菌株cap59(血清型A)的GalXM比来自新型隐球菌新型变种cap67(血清型D)的GalXM具有更大的分子量(4.21×10⁶±0.95×10⁶ g/mol)和回转半径(207±27 nm)。cap67 GalXM的相应值分别为0.70×10⁶±0.05×10⁶ g/mol和120±22 nm。两种菌株的GalXM有效直径和多分散性随温度和培养基生长条件而变化,这表明GalXM结构在同一菌株内会因其环境不同而有所变化。在所有条件下,两种菌株的GalXM的zeta电位测定均为阴性,这与最近报道的葡萄糖醛酸的存在一致。这些结果表明,新型隐球菌GalXM与葡糖醛酸木甘露聚糖一样,可表现出与变种和生长条件相关的变异。用针对GalXM菌株的多克隆抗体对16株新型隐球菌和7株格特隐球菌菌株进行分析,结果显示新型隐球菌新型变种和格鲁比变种菌株之间存在抗原相似性,而与格特隐球菌无反应性。由于GalXM对免疫功能具有有害作用,血清型之间的结构和抗原变异性可能转化为免疫调节作用的差异。