Model-based mutagenesis to improve the enantioselective fractionation properties of an antibody.

T K Nevanen, M-L Hellman, N Munck, G Wohlfahrt, A Koivula, H Söderlund
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引用次数: 15

Abstract

The binding affinity and specificity of recombinant antibodies can be modified by site-directed mutagenesis. Here we have used molecular modelling of the variable domains of an enantiospecific antibody fragment to fine-tune its affinity so it is more suitable for the fractionation of the drug enantiomers. We have shown earlier that the Fab fragment of this antibody specifically recognizes one enantiomer from the racemic mixture of a medical drug and that it can be used for the fractionation of these enantiomers by affinity chromatography. However, the affinity was unnecessarily high, requiring harsh elution conditions to release the bound enantiomer. Thus, the continuous use of the antibody affinity columns was impossible. We made a homology model of the antibody and designed mutations to the antigen-binding site to decrease the affinity. Four out of five point mutations showed decreased affinity for the hapten. Two of the mutations were also combined to construct a double mutant. The affinity columns made using one of the single mutants with lowered affinity and the double mutant were capable of multiple rounds of enantioseparation.

基于模型的诱变以提高抗体的对映选择性分离特性。
重组抗体的结合亲和力和特异性可以通过定点诱变进行修饰。在这里,我们使用分子模型的可变域的对映体特异性抗体片段微调其亲和力,使其更适合药物对映体的分离。我们之前已经证明,该抗体的Fab片段可以特异性地识别药物外消旋混合物中的一种对映体,并且可以通过亲和色谱法对这些对映体进行分离。然而,亲和力过高,需要苛刻的洗脱条件才能释放结合的对映体。因此,不可能连续使用抗体亲和柱。我们建立了抗体的同源性模型,并设计了抗原结合位点的突变来降低亲和力。5个点突变中有4个显示对半抗原的亲和力降低。其中两个突变也被结合起来构建了一个双突变体。用低亲和力的单突变体和双突变体制成的亲和柱能够进行多轮对映体分离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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