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Structural features of interfacial tyrosine residue in ROBO1 fibronectin domain-antibody complex: Crystallographic thermodynamic and molecular dynamic analyses

机译:ROBO1纤连蛋白结构域-抗体复合物中界面酪氨酸残基的结构特征:晶体学热力学和分子动力学分析

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摘要

ROBO1, fibronectin Type-III domain (Fn)-containing protein, is a novel immunotherapeutic target for hepatocellular carcinoma in humans. The crystal structure of the antigen-binding fragment (Fab) of B2212A, the monoclonal antibody against the third Fn domain (Fn3) of ROBO1, was determined in pursuit of antibody drug for hepatocellular carcinoma. This effort was conducted in the presence or absence of the antigen, with the chemical features being investigated by determining the affinity of the antibody using molecular dynamics (MD) and thermodynamics. The structural comparison of B2212A Fab between the complex and the free form revealed that the interfacial TyrL50 (superscripts L, H, and F stand for the residues in the light chain, heavy chain, and Fn3, respectively) played important roles in Fn3 recognition. That is, the aromatic ring of TyrL50 pivoted toward PheF68, forming a CH/π interaction and a new hydrogen bond with the carbonyl O atom of PheF68. MD simulations predicted that the TyrL50-PheF68 interaction almost entirely dominated Fab-Fn3 binding, and Ala-substitution of TyrL50 led to a reduced binding of the resultant complex. On the contrary, isothermal titration calorimetry experiments underscored that Ala-substitution of TyrL50 caused an increase of the binding enthalpy between B2212A and Fn3, but importantly, it induced an increase of the binding entropy, resulting in a suppression of loss in the Gibbs free energy in total. These results suggest that mutation analysis considering the binding entropy as well as the binding enthalpy will aid in the development of novel antibody drugs for hepatocellular carcinoma.
机译:ROBO1是含有纤连蛋白III型结构域(Fn)的蛋白,是人类肝细胞癌的新型免疫治疗靶标。为了对抗肝细胞癌的抗体药物,确定了B2212A的抗原结合片段(Fab)的晶体结构,该抗体是针对ROBO1的第三个Fn结构域(Fn3)的单克隆抗体。这项工作是在存在或不存在抗原的情况下进行的,通过使用分子动力学(MD)和热力学确定抗体的亲和力来研究化学特征。 B2212A Fab在复合物和游离形式之间的结构比较表明,界面Tyr L 50(上标L,H和F代表轻链,重链和Fn3中的残基,分别在Fn3识别中发挥了重要作用。也就是说,Tyr L 50的芳香环向Phe F 68旋转,与Phe F 68。 MD模拟预测,Tyr L 50-Phe F 68相互作用几乎完全控制了Fab-Fn3的结合,而Tyr L 50的Ala取代导致所得复合物的结合减少。相反,等温滴定量热法实验强调,Tyr L 50的丙氨酸取代可导致B2212A与Fn3之间的结合焓增加,但重要的是,它诱导了结合熵的增加,导致总共抑制了吉布斯自由能的损失。这些结果表明,考虑结合熵和结合焓的突变分析将有助于肝细胞癌新型抗体药物的开发。

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