Lin Chih-Pei, Boysen Reinhard I, Campi Eva M, Saito Kei, Hearn Milton T W
School of Chemistry, Monash University, Melbourne, VIC, 3800, Australia.
J Mol Recognit. 2016 Jul;29(7):334-42. doi: 10.1002/jmr.2535. Epub 2016 Feb 4.
This investigation has examined the origin of the molecular recognition associated with the interaction of monoclonal IgG2's with terpyridine-based ligands immobilized onto agarose-derived chromatographic adsorbents. Isothermal titration calorimetric (ITC) methods have been employed to acquire thermodynamic data associated with the IgG2-ligand binding. These ITC investigations have documented that different enthalpic and entropic processes are involved depending on the nature of the chemical substituents in the core structure of the terpyridinyl moiety. In addition, molecular docking studies have been carried out with IgG2 structures with the objective to identify possible ligand binding sites and key interacting amino acid residues. These molecular docking experiments with the different terpyridine-based ligands have shown that all of the examined ligands can potentially undergo favorable interactions with a site located within the Fab region of the IgG2. However, another favorable binding site was also identified from the docking poses to exist within the Fc region of the IgG2 for some, but not all, of the ligands studied. These investigations have provided a basis to elucidate the unique binding properties and chromatographic behaviors shown by several substituted terpyridine ligands in their interaction with IgGs of different isotype. Copyright © 2016 John Wiley & Sons, Ltd.
本研究考察了与固定在琼脂糖衍生色谱吸附剂上的基于三联吡啶的配体相互作用相关的分子识别的起源。采用等温滴定量热法(ITC)获取与IgG2-配体结合相关的热力学数据。这些ITC研究表明,根据三联吡啶基部分核心结构中化学取代基的性质,涉及不同的焓和熵过程。此外,还对IgG2结构进行了分子对接研究,目的是确定可能的配体结合位点和关键相互作用氨基酸残基。这些针对不同基于三联吡啶的配体的分子对接实验表明,所有检测的配体都可能与位于IgG2 Fab区域内的一个位点发生有利的相互作用。然而,从对接构象中还发现,对于一些(但不是所有)研究的配体,在IgG2的Fc区域内也存在另一个有利的结合位点。这些研究为阐明几种取代三联吡啶配体与不同亚型IgG相互作用时表现出的独特结合特性和色谱行为提供了依据。版权所有© 2016约翰威立父子有限公司。