用Triton X-114提取伯氏疏螺旋体的可溶性蛋白对实验感染具有抗性

T.Dharma Rao, Alan B. Frey
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引用次数: 3

摘要

用洗涤剂Triton X-114提取感染性螺旋体,分离伯氏疏螺旋体。亲水性和疏水性蛋白质的凝胶电泳分析表明,洗涤剂提取导致两种蛋白质具有不重叠的电泳谱。单克隆抗体与两种丰富的膜蛋白反应,免疫印迹分析表明亲水性蛋白未被疏水性蛋白污染。此外,用洗涤蛋白或水相蛋白体外共培养的脾细胞胸腺嘧啶掺入和肿瘤坏死因子-α分泌的实验表明,淋巴细胞有丝分裂和巨噬细胞活化b。亲水性相蛋白中完全不存在burgdorferi。使用Triton X-114水相和洗涤相蛋白分别免疫BALB/c和μMT/μMT (B细胞敲除)小鼠,这些小鼠随后受到传染性B的攻击。burgdorferi。亲水性相蛋白能够诱导两种小鼠对感染的保护性抵抗,这表明潜在的候选疫苗抗原包含在生化类抗原中,这些抗原既缺乏淋巴细胞有丝分裂原活性,也缺乏主要的外表面蛋白。此外,B细胞敲除小鼠接种疫苗的能力表明,体液抗螺旋体免疫反应并不是保护性免疫的唯一基础。
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Soluble Proteins Isolated fromBorrelia burgdorferiby Extraction with Triton X-114 Confer Resistance to Experimental Infection

Fractionation ofBorrelia burgdorferiwas made by extraction of infectious spirochetes using the detergent Triton X-114. Gel electrophoresis analysis of hydrophilic and hydrophobic proteins demonstrated that detergent extraction resulted in two populations of proteins with nonoverlapping electrophoretic profiles. Immunoblot analysis with monoclonal antibodies reactive with two abundant membrane proteins demonstrated that hydrophilic proteins were uncontaminated with hydrophobic proteins. In addition, assay of thymidine incorporation into and secretion of tumor necrosis factor-α from splenocytes coculturedin vitrowith either detergent or aqueous phase proteins showed that lymphocyte mitogenic and macrophage activation activities ofB. burgdorferiwere completely absent from the hydrophilic phase proteins. The Triton X-114 aqueous and detergent phase proteins were used to immunize BALB/c and separately μMT/μMT (B cell knockout) mice that were subsequently challenged with infectiousB. burgdorferi.The hydrophilic phase proteins were able to induce protective resistance to infection in either strain of mice demonstrating that potential candidate vaccine antigens are contained in the biochemical class of antigens which is devoid of both lymphocyte mitogen activity and major outer surface proteins. Furthermore, the ability to vaccinate B cell knockout mice suggests that the humoral antispirochete immune response is not the exclusive basis for protective immunity.

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