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Specific Affinity Extraction Method for Small Molecule-Binding Proteins

机译:小分子结合蛋白的特异性亲和提取方法

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Validation of the targets of candidate drugs is critical for rapid and efficient drug discovery and development and for understanding the pharmacological action and potential toxicities of the prospective therapeutic agent. Due to the nonspecific binding of abundant proteins to small molecule-immobilized gels, it is difficult to identify the protein targets of small molecules from crude biological samples by affinity extraction. To address this problem, we have developed an affinity gel for the specific extraction of small molecule-binding proteins. We immobilized small molecules on the agarose gel through a disulfide linker that is cleavable by mild reduction. This system has allowed specific and noncovalent complex formation between the small molecule and the target protein, keeping the effect of the nonspecific abundant proteins adsorbed on both the linker and gel surface to minimum. By preparing this affinity matrix with deoxycholate as a model small molecule, we captured two independent deoxycholate-binding proteins of different affinities from mouse ascites, anti-deoxycholate antibody, and serum albumin. As other proteins were not captured, this affinity extraction method should contribute significantly to the accurate and rapid drug discovery and development.
机译:候选药物靶标的验证对于快速有效地发现和开发药物以及了解预期治疗剂的药理作用和潜在毒性至关重要。由于丰富的蛋白质与固定在小分子上的凝胶的非特异性结合,很难通过亲和提取从粗生物学样品中鉴定出小分子的蛋白质靶标。为了解决这个问题,我们开发了一种亲和凝胶用于小分子结合蛋白的特异性提取。我们通过可通过轻度还原裂解的二硫键将小分子固定在琼脂糖凝胶上。该系统允许在小分子和靶蛋白之间形成特异性和非共价的复合物,从而使吸附在连接子和凝胶表面上的非特异性丰富蛋白的作用降至最低。通过以脱氧胆酸盐为模型小分子制备此亲和基质,我们从小鼠腹水,抗脱氧胆酸盐抗体和血清白蛋白中捕获了两个不同亲和力的独立的脱氧胆酸盐结合蛋白。由于未捕获其他蛋白质,因此这种亲和提取方法应为准确,快速的药物发现和开发做出重要贡献。

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