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固定在 CNTs 上的单克隆抗体的结构和动态特性:计算研究。

Structural and dynamic properties of monoclonal antibodies immobilized on CNTs: a computational study.

机构信息

Department of Chemistry and Namur Research College (NARC), University of Namur (UNamur), Rue de Bruxelles 61, 5000 Namur (Belgium).

出版信息

Chemistry. 2013 Sep 9;19(37):12281-93. doi: 10.1002/chem.201301376. Epub 2013 Jul 24.

Abstract

Due to the widespread application of carbon nanotube (CNT)-based materials in nanomedicine, it is nowadays of paramount importance to unravel at the atomistic level of detail the structural properties of such bioconjugates in order to rationalize and predict the effect exerted by the graphitic framework on the bio-active counterpart. In this paper, we report for the first time all-atom explicit solvent molecular dynamics (MD) simulations investigating the structural and dynamic properties of a noncovalent bioconjugate in which the monoclonal Cetuximab antibody (Ctx) is adsorbed on a CNT surface. Upon selection of the three most representative adsorption modes as obtained by docking studies, force-field MD and DFT simulations unambiguously showed that hydrophobic interactions mainly govern the adsorption of the protein on the graphitic surface. Two main adsorption poses have been predicted: a pose-fab (p-fab) and pose-fc (p-fc) (fab = fragment antigen binding region; fc = fragment crystallizable region), the former being favored with small-diameter tubes (≤40 Å). In all the predicted poses, the secondary structure of Ctx is largely unaffected by the presence of the graphitic surface and, consistently with previous literature studies, our simulations reveal that positively charged amino acidic residues, such as Lys and Arg, predominantly contribute to the stabilization of the CNT⋅Ctx complex acting like surfactants. The predicted structural models are consistent with the experimental data, for which the immobilization of the antibody on CNTs does not disrupt the structural and recognition properties of the Ctx, consequently supporting the reliability of the used bioconjugation strategy for engineering stable and responsive hybrid nanomaterials for therapeutic applications. Moreover, a remarkable structural similarity of Ctx with antibodies of different isotypes suggests that in principle the CNT framework can interact in the same manner with all antibodies currently used in clinical applications.

摘要

由于碳纳米管(CNT)基材料在纳米医学中的广泛应用,如今,从原子水平详细揭示这些生物缀合物的结构特性至关重要,以便合理预测和预测石墨框架对生物活性物质的影响。在本文中,我们首次报道了全原子显式溶剂分子动力学(MD)模拟,研究了非共价生物缀合物的结构和动态特性,其中单克隆抗体西妥昔单抗(Ctx)吸附在 CNT 表面上。通过对接研究、力场 MD 和 DFT 模拟选择了三种最具代表性的吸附模式后,明确表明疏水性相互作用主要控制蛋白质在石墨表面上的吸附。预测了两种主要的吸附构象:片段抗原结合区(fab)和片段结晶区(fc)吸附构象(fab = 片段抗原结合区;fc = 片段结晶区),前者在小直径管(≤40 Å)中更有利。在所有预测的构象中,Ctx 的二级结构在很大程度上不受石墨表面的影响,与先前的文献研究一致,我们的模拟表明带正电荷的氨基酸残基,如赖氨酸和精氨酸,主要通过充当表面活性剂来稳定 CNT⋅Ctx 复合物。预测的结构模型与实验数据一致,抗体在 CNT 上的固定不会破坏 Ctx 的结构和识别特性,从而支持用于工程稳定和响应性混合纳米材料的生物缀合策略的可靠性,用于治疗应用。此外,Ctx 与不同同种型的抗体具有显著的结构相似性,这表明原则上 CNT 框架可以以相同的方式与目前临床应用中使用的所有抗体相互作用。

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