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用于预防聚集的 QTY 编码设计抗体:结构生物信息学和计算研究。

QTY code designed antibodies for aggregation prevention: A structural bioinformatic and computational study.

机构信息

Laboratory of Molecular Architecture, Media Lab, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.

Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.

出版信息

Proteins. 2024 Feb;92(2):206-218. doi: 10.1002/prot.26603. Epub 2023 Oct 5.

Abstract

Therapeutic monoclonal antibodies are the most rapidly growing class of molecular medicine, and they are beneficial to the treatment of a broad spectrum of human diseases. However, the aggregation of antibodies during the process of manufacture, distribution, and storage poses significant challenges, potentially compromising efficacy and inducing adverse immune responses. We previously conceived a QTY (glutamine, threonine, tyrosine) code, a simple tool for enhancing protein water-solubility by systematically pairwise replacing hydrophobic residues L (leucine), V (valine)/I (isoleucine), and F (phenylalanine). The QTY code offers a promising alternative to traditional methods of controlling aggregation in integral transmembrane proteins. In this study, we designed variants of four antibodies applying the QTY code, changing only the β-sheets. Through the structure-based aggregation analysis, we found that these QTY antibody variants demonstrated significantly decreased aggregation propensity compared to their wild-type counter parts. Our results of molecular dynamics simulations showed that the design by QTY code is capable of maintaining the antigen-binding affinity and structural stability. Our structural informatic and computational study suggests that the QTY code offers a significant potential in mitigating antibody aggregation.

摘要

治疗性单克隆抗体是分子医学中增长最快的一类,它们有益于治疗广泛的人类疾病。然而,抗体在制造、配送和储存过程中的聚集对功效构成了重大挑战,并可能引发不良的免疫反应。我们之前提出了 QTY(谷氨酰胺、苏氨酸、酪氨酸)密码子,这是一种通过系统地成对替换疏水性残基 L(亮氨酸)、V(缬氨酸)/I(异亮氨酸)和 F(苯丙氨酸)来提高蛋白质水溶性的简单工具。与传统的控制整体跨膜蛋白聚集的方法相比,QTY 密码子提供了一种很有前途的替代方法。在这项研究中,我们设计了四个抗体的变体,仅改变β-折叠。通过基于结构的聚集分析,我们发现与野生型相比,这些 QTY 抗体变体的聚集倾向明显降低。我们的分子动力学模拟结果表明,QTY 密码子的设计能够保持抗原结合亲和力和结构稳定性。我们的结构信息学和计算研究表明,QTY 密码子在减轻抗体聚集方面具有很大的潜力。

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