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使用分子建模和配体对接研究抗氨基酸抗体的立体选择性。

Investigation of the stereoselectivity of an anti-amino acid antibody using molecular modeling and ligand docking.

作者信息

Ranieri Daniel I, Corgliano Danielle M, Franco Elliott J, Hofstetter Heike, Hofstetter Oliver

机构信息

Department of Chemistry and Biochemistry, Northern Illinois University, DeKalb, Illinois 60115-2862, USA.

出版信息

Chirality. 2008 Mar;20(3-4):559-70. doi: 10.1002/chir.20522.

Abstract

The structure of the binding site of the stereoselective anti-D-amino acid antibody 67.36 was modeled utilizing web antibody modeling (WAM) and SWISS-MODEL. Although docking experiments performed with an aromatic amino acid as model ligand were unsuccessful with the WAM structure, ligand binding was achieved with the SWISS-MODEL structure. Incorporation of side-chain flexibility within the binding site resulted in a protein structure that stereoselectively binds to the D-enantiomer of the model ligand. In addition to four hydrogen bonds that are formed between amino acid residues in the binding site and the ligand, a number of hydrophobic interactions are involved in the formation of the antibody-ligand complex. The aromatic side chain of the ligand interacts with a tryptophan and a tyrosine residue in the binding site through pi-pi stacking. Fluorescence spectroscopic investigations also suggest the presence of tryptophan residues in the binding site, as ligand binding causes an enhancement of the antibody's intrinsic fluorescence at an emission wavelength of 350 nm. Based on the modeled antibody structure, the L-enantiomer of the model ligand cannot access the binding site due to steric hindrance. Additional docking experiments performed with D-phenylalanine and D-norvaline showed that these ligands are bound to the antibody in a way analogous to the D-enantiomer of the model ligand.

摘要

利用网络抗体建模(WAM)和SWISS-MODEL对立体选择性抗D-氨基酸抗体67.36结合位点的结构进行了模拟。尽管以芳香族氨基酸作为模型配体与WAM结构进行对接实验未成功,但与SWISS-MODEL结构实现了配体结合。结合位点内引入侧链柔性产生了一种能立体选择性结合模型配体D-对映体的蛋白质结构。除了结合位点中的氨基酸残基与配体之间形成的四个氢键外,抗体-配体复合物的形成还涉及许多疏水相互作用。配体的芳香侧链通过π-π堆积与结合位点中的一个色氨酸和一个酪氨酸残基相互作用。荧光光谱研究还表明结合位点中存在色氨酸残基,因为配体结合会导致抗体在350nm发射波长处的固有荧光增强。基于模拟的抗体结构,模型配体的L-对映体由于空间位阻无法进入结合位点。用D-苯丙氨酸和D-正缬氨酸进行的额外对接实验表明,这些配体与抗体的结合方式类似于模型配体的D-对映体。

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