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首页> 外文期刊>Infection and immunity >Purification and characterization of the major antigen WI-1 from Blastomyces dermatitidis yeasts and immunological comparison with A antigen.
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Purification and characterization of the major antigen WI-1 from Blastomyces dermatitidis yeasts and immunological comparison with A antigen.

机译:皮肤芽孢杆菌酵母中主要抗原WI-1的纯化,鉴定以及与A抗原的免疫学比较。

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摘要

The lack of well-defined antigens from Blastomyces dermatitidis has hampered the ability to reliably diagnose human infection and study the immunobiology of blastomycosis. We recently discovered a novel surface protein on B. dermatitidis yeasts, designated WI-1, and demonstrated it to be a key antigenic target of humoral and cellular responses during infection. In the present article, we purified and characterized WI-1 and compared it immunologically with the only Blastomyces antigen commercially available, A antigen. WI-1 was purified by high-performance liquid chromatography over a DEAE-cellulose column. It eluted from the column at a point on the salt gradient corresponding to 460 to 490 mM NaCl, reflecting its acidic pI of approximately equal to 5.2. Purified WI-1 had a molecular mass of 120 kDa and contained a large amount of cysteine (85 residues) and aromatic amino acids but undetectable carbohydrate. In contrast, A antigen had a molecular mass of 135 kDa and contained 37% carbohydrate. Immunological comparison of the two antigens showed that, when radiolabeled, WI-1 was more reactive with anti-Blastomyces antisera than A antigen but did not cross-react with anti-Histoplasma antisera. Proteinase digestion of WI-1 eliminated its recognition by anti-WI-1 and anti-Blastomyces antisera. Proteinase treatment of A antigen had no effect on its recognition by anti-Blastomyces or anti-Histoplasma antisera, but periodate treatment abolished recognition by anti-Histoplasma antisera, indicating that the cross-reactive determinant(s) of A antigen is displayed on the accompanying carbohydrate. In further studies, anti-WI-1 antiserum reacted with A antigen and, conversely, anti-A antiserum and monoclonal antibodies (MAbs) reacted with WI-1, indicating a shared determinant on the two antigens. A recombinant 25-amino-acid repeat, recently cloned from WI-1 and found to be the major target of antibody recognition of WI-1, reacted strongly with anti-A antiserum and MAbs. In MAb competition tests, MAbs specific for the 25-residue repeat abolished binding of anti-A antiserum to A antigen. In antigen inhibition tests, the recombinant repeat abolished binding of anti-A antiserum to A antigen. These results demonstrate that the repeat is the major site of antibody recognition of both WI-1 and A antigen and that the recombinant, nonglycosylated peptide could replace either native antigen in formatting better diagnostic tests for blastomycosis. Moreover, they suggest that producing fungal protein antigens as nonglycosylated peptides in a procaryotic expression system may circumvent problems of antigen cross-reactivity that are due to posttranslational modification.
机译:缺乏来自皮肤芽孢杆菌的明确定义的抗原妨碍了可靠地诊断人类感染和研究芽孢杆菌病的免疫生物学的能力。我们最近在皮肤病双歧杆菌酵母上发现了一种新型表面蛋白,命名为WI-1,并证明它是感染过程中体液和细胞反应的关键抗原靶标。在本文中,我们纯化了WI-1并对其进行了表征,并将其与市售的唯一芽孢杆菌抗原A抗原进行了免疫学比较。 WI-1通过高效液相色谱法在DEAE-纤维素柱上纯化。它在盐梯度上对应于460至490 mM NaCl的一点上从色谱柱上洗脱下来,反映出其酸性pI大约等于5.2。纯化的WI-1的分子量为120 kDa,并含有大量的半胱氨酸(85个残基)和芳香族氨基酸,但未检出碳水化合物。相反,抗原的分子量为135 kDa,含有37%的碳水化合物。两种抗原的免疫学比较表明,当进行放射性标记时,WI-1对抗芽孢杆菌的抗血清比对A抗原的反应性强,但不会与抗Histoplasma抗血清发生交叉反应。 WI-1的蛋白酶消化消除了其对抗WI-1和抗芽孢杆菌抗血清的识别。蛋白酶处理的A抗原对其抗芽孢杆菌或抗Histoplasma抗血清的识别没有影响,但高碘酸处理则取消了抗Histoplasma抗血清的识别,表明在抗原上显示了A抗原的交叉反应性决定簇。糖类。在进一步的研究中,抗WI-1抗血清与A抗原反应,反之,抗A抗血清和单克隆抗体(MAbs)与WI-1反应,表明这两种抗原具有共同的决定因素。最近从WI-1克隆并发现是WI-1抗体识别的主要靶标的重组25个氨基酸重复序列与抗A抗血清和MAb强烈反应。在MAb竞争测试中,对25个残基重复序列具有特异性的MAb消除了抗A抗血清与A抗原的结合。在抗原抑制测试中,重组重复序列消除了抗A抗血清与A抗原的结合。这些结果表明,重复序列是WI-1和A抗原均被抗体识别的主要位点,并且重组的非糖基化肽可以替代任一天然抗原,从而形成更好的针对母芽胞菌病的诊断测试。此外,他们建议在原核表达系统中产生真菌蛋白抗原作为非糖基化肽可能会避免由于翻译后修饰而引起的抗原交叉反应性问题。

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