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蛋白质聚乙二醇化位点的选择标准,以提高其热力学和蛋白水解稳定性。

Criteria for selecting PEGylation sites on proteins for higher thermodynamic and proteolytic stability.

机构信息

Department of Chemistry and Biochemistry, Brigham Young University , Provo, Utah 84602, United States.

出版信息

J Am Chem Soc. 2014 Dec 17;136(50):17547-60. doi: 10.1021/ja5095183. Epub 2014 Dec 4.

Abstract

PEGylation of protein side chains has been used for more than 30 years to enhance the pharmacokinetic properties of protein drugs. However, there are no structure- or sequence-based guidelines for selecting sites that provide optimal PEG-based pharmacokinetic enhancement with minimal losses to biological activity. We hypothesize that globally optimal PEGylation sites are characterized by the ability of the PEG oligomer to increase protein conformational stability; however, the current understanding of how PEG influences the conformational stability of proteins is incomplete. Here we use the WW domain of the human protein Pin 1 (WW) as a model system to probe the impact of PEG on protein conformational stability. Using a combination of experimental and theoretical approaches, we develop a structure-based method for predicting which sites within WW are most likely to experience PEG-based stabilization, and we show that this method correctly predicts the location of a stabilizing PEGylation site within the chicken Src SH3 domain. PEG-based stabilization in WW is associated with enhanced resistance to proteolysis, is entropic in origin, and likely involves disruption by PEG of the network of hydrogen-bound solvent molecules that surround the protein. Our results highlight the possibility of using modern site-specific PEGylation techniques to install PEG oligomers at predetermined locations where PEG will provide optimal increases in conformational and proteolytic stability.

摘要

蛋白质侧链的聚乙二醇化(PEGylation)已被使用了 30 多年,以增强蛋白质药物的药代动力学特性。然而,目前还没有基于结构或序列的指南来选择提供最佳 PEG 基药代动力学增强作用且对生物活性损失最小的位点。我们假设全局最佳 PEG 化位点的特征是 PEG 低聚物能够增加蛋白质构象稳定性;然而,目前对 PEG 如何影响蛋白质构象稳定性的理解还不完整。在这里,我们使用人类蛋白质 Pin 1(WW)的 WW 结构域作为模型系统来探究 PEG 对蛋白质构象稳定性的影响。我们使用实验和理论相结合的方法,开发了一种基于结构的方法来预测 WW 中哪些位点最有可能经历 PEG 基稳定化,并且我们表明,这种方法可以正确预测鸡Src SH3 结构域中一个稳定化 PEG 化位点的位置。在 WW 中,PEG 基稳定化与增强的抗蛋白水解作用有关,其起源于熵,并且可能涉及 PEG 破坏围绕蛋白质的氢键结合溶剂分子网络。我们的结果强调了使用现代定点 PEG 化技术在预定位置安装 PEG 低聚物的可能性,在这些位置,PEG 将提供最佳的构象和蛋白水解稳定性的增强作用。

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