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首页> 外文期刊>Chem-Bio Informatics Journal >抗体精製における溶出プロファイルの制御を目的としたプロテインAの論理的設計および改変
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抗体精製における溶出プロファイルの制御を目的としたプロテインAの論理的設計および改変

机译:旨在控制抗体纯化中溶出度的蛋白A的逻辑设计和修饰

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摘要

References(26) Cited-By(1) Biopharmaceutical monoclonal antibodies (Mabs) show different chromatographic behaviors in the elution step on protein A chromatography, although Mabs have similar three-dimensional structures. It is well known that interactions of conventional protein A to the VH3 subfamily variable region negatively affect Mabs elution properties. The mutation G29A is known to weaken this binding, although not always sufficiently. We designed novel protein A mutations, S33E and D36R, by a computer-aided evaluation based on the three-dimensional structure. These mutations are expected to not only eliminate protein A binding to the variable region of Mabs but also to maintain its alkaline stability, which is required for effective CIP (Clean in place) of the protein A affinity matrix. In view of the superior potential of C domain, an in vitro study was performed with the G29A mutant of C domain (C-G29A) as a model protein. Both pentameric C domain mutants (C-G29A/S33E.5d and C-G29A/D36R.5d) showed little binding ability to the VH3 subfamily variable region of Mabs by BIACORE analysis. We used a C-G29A/S33E.5d-immobilized matrix to confirm that the elution profile of Mabs belonging to the VH3 subfamily at pH 3.5 was significantly improved. This matrix also showed almost the same alkaline stability as did the C-G29A.5d-immobilized matrix. The engineered protein A ligand, whose binding ability to the variable region is completely eliminated, would enable the separation of Fab fragments in flow-through fractions from Mab digestions. Rational design by a computer-aided evaluation should enhance the efficiency of protein ligand engineering.
机译:参考文献(26)被引用的(1)生物制药单克隆抗体(Mab)在蛋白A色谱的洗脱步骤中显示出不同的色谱行为,尽管Mab具有相似的三维结构。众所周知,常规蛋白A与VH3亚家族可变区的相互作用会对Mabs洗脱特性产生负面影响。已知突变G29A削弱了这种结合,尽管并不总是足够。通过基于三维结构的计算机辅助评估,我们设计了新颖的蛋白A突变S33E和D36R。预期这些突变不仅可以消除蛋白A与单克隆抗体可变区的结合,而且可以维持其碱性稳定性,这对于蛋白A亲和基质的有效CIP(原位清洗)是必需的。考虑到C结构域的巨大潜力,以C结构域的G29A突变体(C-G29A)作为模型蛋白进行了体外研究。通过BIACORE分析,两个五聚体C结构域突变体(C-G29A / S33E.5d和C-G29A / D36R.5d)都显示出与Mabs的VH3亚家族可变区几乎没有结合能力。我们使用固定化C-G29A / S33E.5d的基质来证实,在pH 3.5时,属于VH3亚家族的单克隆抗体的洗脱曲线得到了显着改善。该基质还显示出与固定化C-G29A.5d基质几乎相同的碱稳定性。完全消除了其对可变区的结合能力的工程化蛋白A配体将能够从Mab消化中分离流通片段中的Fab片段。通过计算机辅助评估的合理设计应提高蛋白质配体工程的效率。

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