首页> 外文期刊>Chembiochem: A European journal of chemical biology >Enantioselective Proteins:Selection,Binding Studies and Molecular Modeling of Antibodies with Affinity towards Hydrophobic BINOL Derivatives
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Enantioselective Proteins:Selection,Binding Studies and Molecular Modeling of Antibodies with Affinity towards Hydrophobic BINOL Derivatives

机译:对映选择性蛋白:对疏水性BINOL衍生物具有亲和力的抗体的选择,结合研究和分子建模

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摘要

In this paper,the initial steps towards the design of novel artificial metalloenzymes that exploit proteins as a second coordination sphere for traditional metal-ligand catalysis are described.Phage display was employed to select and study antibody fragments capable of recognizing hydrophobic BINOL derivatives designed to mimic BINAP,a widely used ligand in asymmetric metal-catalyzed reactions.The binding affinities of the selected antibodies towards a series of haptens were evaluated by using ELISA assays.A homology model of one of the most selective antibodies was constructed.and a computer-assisted ligand-dock-ing study was carried out to elucidate the binding of the hapten.It was shown that,due to the hydrophobic nature of the haptens,a higher level of theoretical treatment was required to identify the correct binding modes.A small selection of the antibodies was found to discriminate between enantiomers and small struc tural modifications of the BINOL derivatives.The selectivities arise from hydrophobic interactions,and we propose that the identi fled set of antibodies provides a foundation for a novel route to artificial metalloenzymes.
机译:本文描述了设计新型人工金属酶的初步步骤,该酶利用蛋白质作为传统金属-配体催化的第二个配位域。采用噬菌体展示来选择和研究能够识别拟模拟的疏水性BINOL衍生物的抗体片段BINAP,一种不对称金属催化反应中广泛使用的配体。使用ELISA分析法评估所选抗体对一系列半抗原的结合亲和力,构建选择性最高的抗体之一的同源性模型,并在计算机辅助下进行进行了配体对接研究以阐明半抗原的结合。结果表明,由于半抗原的疏水性,需要更高水平的理论处理才能确定正确的结合方式。发现该抗体可区分对映异构体和BINOL衍生物的小结构修饰。疏水相互作用产生的,我们建议确定的抗体组为人工金属酶的新途径提供基础。

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