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一种将顺序免疫亲和耗尽与差异凝胶电泳相结合的新方法,用于鉴定自身抗体作为癌症生物标志物。

A new method combining sequential immunoaffinity depletion and differential in gel electrophoresis to identify autoantibodies as cancer biomarkers.

机构信息

UCLouvain, Institut de Recherche Expérimentale et Clinique (IREC), Pole of Pharmacology and Therapeutics (FATH), Brussels, Belgium.

出版信息

J Immunol Methods. 2013 Oct 31;396(1-2):23-32. doi: 10.1016/j.jim.2013.07.006. Epub 2013 Aug 2.

Abstract

Easily measurable biomarkers are urgently required to detect early stages of cancer progression. Autoantibodies (aAbs), as a component of the humoral immune response against tumor cells, have such potential of diagnostic markers since they are circulating and stable proteins, produced rapidly and easily amenable to in vitro dosage. The identification of aAbs is based on the characterization of tumor-associated antigens (TAA) against which they are directed. Here, we propose a new method for an unbiased identification of TAA and thereby of aAbs as cancer biomarkers. This method that we called sequential immunoaffinity depletion-differential in gel electrophoresis (SID-DIGE) is based on the immunodepletion of tumor cell lysates with IgG from control and tumor-bearing mice and direct matching of the flow throughs of these immunoaffinity separations on the same 2D format. This strategy reduces the complexity of the samples to be analyzed and maximizes the interest of assessing hundreds of proteins simultaneously. SID-DIGE has also the potential, contrary to existing serological proteome analysis (SERPA) techniques, to detect immunogenic proteins with conformational epitopes, including those resulting from post-translational modifications. Using a model of human colorectal tumors in mice for the proof of principle, we showed that SID-DIGE outperforms the conventional SERPA technique, with the identification of 7 common TAA (validating our approach) and 18 additional aAbs proving the potential of this new method. In particular, the identification of aAbs directed against key enzymes supporting glycolysis gives credential to the role of hypoxia as a major determinant of the tumor proteome and thus as a source of immunogenicity. Overall, the developed methodology allowed efficient screening of sera for the identification of aAbs as potential biomarkers.

摘要

迫切需要易于测量的生物标志物来检测癌症进展的早期阶段。自身抗体 (aAbs) 作为针对肿瘤细胞的体液免疫反应的一部分,具有作为诊断标志物的这种潜力,因为它们是循环的和稳定的蛋白质,快速产生且易于进行体外定量。aAbs 的鉴定基于针对其定向的肿瘤相关抗原 (TAA) 的特征。在这里,我们提出了一种新的方法来无偏地鉴定 TAA,从而鉴定出作为癌症生物标志物的 aAbs。这种我们称为顺序免疫亲和层析-差异凝胶电泳 (SID-DIGE) 的方法基于用来自对照和荷瘤小鼠的 IgG 免疫耗尽肿瘤细胞裂解物,然后直接将这些免疫亲和分离的流通过程匹配到相同的 2D 格式上。这种策略减少了要分析的样品的复杂性,并最大限度地提高了同时评估数百种蛋白质的兴趣。与现有的血清蛋白质组分析 (SERPA) 技术相反,SID-DIGE 具有检测具有构象表位的免疫原性蛋白质的潜力,包括那些来自翻译后修饰的蛋白质。我们使用人类结直肠肿瘤在小鼠中的模型来证明原理,结果表明 SID-DIGE 优于常规 SERPA 技术,鉴定出 7 个常见的 TAA(验证了我们的方法)和 18 个额外的 aAbs,证明了这种新方法的潜力。特别是,鉴定针对支持糖酵解的关键酶的 aAbs 为缺氧作为肿瘤蛋白质组的主要决定因素并因此作为免疫原性的来源提供了依据。总体而言,所开发的方法学允许有效地筛选血清以鉴定作为潜在生物标志物的 aAbs。

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