首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >The propagation of binding interactions to remote sites in proteins: Analysis of the binding of the monoclonal antibody D1.3 to lysozyme
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The propagation of binding interactions to remote sites in proteins: Analysis of the binding of the monoclonal antibody D1.3 to lysozyme

机译:绑定交互向远程站点的传播 蛋白:单克隆抗体D1.3与蛋白的结合分析 溶菌酶

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摘要

The interaction of a ligand with a protein occurs at a local site (the binding site) and involves only a few residues; however, the effects of that interaction are often propagated to remote locations. The chain of events initiated by binding provides the basis for fundamental biological phenomena such as allosterism, signal transduction, and structural-stability modification. In this paper, a structure-based statistical thermodynamic approach is presented and used to predict the propagation of the stabilization effects triggered by the binding of the monoclonal antibody D1.3 to hen egg white lysozyme. Previously, Williams et al. [Williams, D. C., Benjamin, D. C., Poljak, R. J. & Rule, G. S. (1996) J. Mol. Biol. 257, 866–876] showed that the binding of this antibody affects the stability of hen egg white lysozyme and that the binding effects propagate to a selected number of residues at remote locations from the binding epitope. In this paper, we show that this phenomenon can be predicted from structure. The formalism presented here permits the identification of the structural path followed by cooperative interactions that originate at the binding site. It is shown that an important condition for the propagation of binding effects to distal regions is the presence of a significant fraction of residues with low structural stability in the uncomplexed binding site. A survey of protein structures indicates that many binding sites have a dual character and are defined by regions of high and low structural stabilities. The low-stability regions might be involved in the transmission of binding information to other regions in the protein.
机译:配体与蛋白质的相互作用发生在局部位点(结合位点),仅涉及少数残基。但是,这种交互作用通常会传播到远程位置。结合引发的事件链为诸如变构,信号转导和结构稳定性修饰等基本生物学现象提供了基础。在本文中,提出了一种基于结构的统计热力学方法,并将其用于预测由单克隆抗体D1.3与鸡蛋清溶菌酶结合引发的稳定效应的传播。以前,威廉姆斯等。 [Williams D. C.,Benjamin D. C.,Poljak R. J.&Rule,G. S.(1996)J. Mol。生物学[257,866–876]显示该抗体的结合会影响鸡蛋清溶菌酶的稳定性,并且结合作用会传播到结合表位较远位置的选定数量的残基。在本文中,我们表明可以从结构中预测这种现象。这里介绍的形式主义允许对结构进行识别 路径,其后是来自绑定的合作交互 现场。结果表明,传播的重要条件 对远端区域的结合作用是显着的存在 复杂结构中低结构稳定性的残基比例 结合位点。一项蛋白质结构调查表明,许多 结合位点具有双重特征,由高位区域定义 和低的结构稳定性。低稳定性区域可能是 参与将绑定信息传输到其他区域 蛋白质。

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