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首页> 外文期刊>Parasite Immunology >Differential recognition patterns of Schistosoma haematobium adult worm antigens by the human antibodies IgA, IgE, IgG1 and IgG4
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Differential recognition patterns of Schistosoma haematobium adult worm antigens by the human antibodies IgA, IgE, IgG1 and IgG4

机译:人源抗体IgA,IgE,IgG1和IgG4对血吸虫血吸虫成虫蠕虫抗原的差异识别模式

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摘要

P>Schistosoma haematobium antigen recognition profiles of the human isotypes IgA, IgE, IgG1 and IgG4 were compared by image analysis of western blots. Adult worm antigens separated by two-dimensional gel electrophoresis were probed with pooled sera from Zimbabweans resident in a S. haematobium endemic area, followed by the identification of individual antigenic parasite proteins using mass spectrometry. Overall, IgG1 reacted with the largest number of antigens, followed by IgE and IgA which detected the same number, while IgG4 detected the fewest antigens. IgE recognized all antigens reactive with IgG4 as well as an additional four antigens, an isoform of 28-kDa GST, phosphoglycerate kinase, actin 1 and calreticulin. IgG1 additionally recognized fatty acid-binding protein, triose-phosphate isomerase and heat shock protein 70, which were not recognized by IgA. Recognition patterns varied between some isoforms, e.g. the two fructose 1-6-bis-phosphate aldolase isoforms were differentially recognized by IgA and IgG1. Although the majority of S. haematobium adult worm antigens are recognized by all of the four isotypes, there are clear restrictions in antibody recognition for some antigens. This may partly explain differences observed in isotype dynamics at a population level. Differential recognition patterns for some isoforms indicated in the study have potential importance for vaccine development.
机译:通过免疫印迹的图像分析比较了人同种型IgA,IgE,IgG1和IgG4的血吸虫血红蛋白抗原识别谱。用二维凝胶电泳分离的成虫蠕虫抗原用居住在血红球菌流行区的津巴布韦的合并血清进行探测,然后使用质谱法鉴定单个抗原性寄生虫蛋白。总体而言,IgG1与最大数量的抗原反应,其次是IgE和IgA,它们检测到的抗原数量相同,而IgG4检测到的抗原最少。 IgE识别与IgG4有反应性的所有抗原,以及其他四个抗原,即28-kDa GST的同工型,磷酸甘油酸激酶,肌动蛋白1和钙网蛋白。 IgG1还识别了IgA不识别的脂肪酸结合蛋白,磷酸三糖异构酶和热休克蛋白70。识别模式在某些同工型之间有所不同,例如IgA和IgG1可以识别两种果糖1-6-双磷酸醛缩醛酶同工型。尽管大多数四种同型血吸虫链球菌成虫蠕虫抗原均被识别,但对某些抗原的抗体识别仍存在明显限制。这可能部分解释了在人群水平上同种型动力学中观察到的差异。研究中指出的某些同工型的差异识别模式对于疫苗开发具有潜在的重要性。

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