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深入了解增强与 IL-2 受体 α 结合亲和力的 IL-2 突变体的结合识别和计算设计。

Insights into the binding recognition and computational design of IL-2 muteins with enhanced predicted binding affinity to the IL-2 receptor α.

机构信息

Department of Chemistry, Faculty of Science, Silpakorn University, Nakhon Pathom, 73000, Thailand.

Independent Researcher, Bangkok, 10800, Thailand.

出版信息

J Mol Graph Model. 2024 Dec;133:108883. doi: 10.1016/j.jmgm.2024.108883. Epub 2024 Oct 11.

Abstract

Interleukin-2 (IL-2) is an immune system regulator that has received approval for cancer treatment. However, high-dose IL-2 therapy has seen restricted use due to its low efficacy and on-target toxicity. To enhance the effectiveness of IL-2 therapy, it is essential to engineer IL-2 molecules to enhance their specificity toward target cell populations. In this study, molecular dynamics (MD) simulations and Rosetta software were utilized to design novel high-affinity IL-2Rα-binding IL-2 muteins. MD simulations were used to identify the target residues of IL-2 for design, and Rosetta software were then employed to predict potential IL-2 muteins with higher binding affinity toward IL-2Rα. Rosetta generated two potential designed IL-2 muteins. The results of the MD validation and MM/GBSA analysis indicated that both designed IL-2 muteins exhibited greater predicted binding affinities toward IL-2Rα than that of the native proteins. RMSF analysis demonstrated that the structural fluctuations of free IL-2 and designed muteins were similar, indicating that the mutations did not alter the intramolecular force responsible for IL-2's stability and folding. These designed IL-2 muteins may have potential benefits for cancer immunotherapy.

摘要

白细胞介素-2(IL-2)是一种已被批准用于癌症治疗的免疫系统调节剂。然而,由于其疗效低和针对靶细胞的毒性,高剂量 IL-2 治疗的应用受到限制。为了提高 IL-2 治疗的效果,必须对 IL-2 分子进行工程改造,以增强其对靶细胞群体的特异性。在这项研究中,使用分子动力学(MD)模拟和 Rosetta 软件来设计新型高亲和力 IL-2Rα结合的 IL-2 突变体。MD 模拟用于确定 IL-2 的设计靶位,然后使用 Rosetta 软件预测与 IL-2Rα具有更高结合亲和力的潜在 IL-2 突变体。Rosetta 生成了两种潜在的设计 IL-2 突变体。MD 验证和 MM/GBSA 分析的结果表明,这两种设计的 IL-2 突变体与天然蛋白相比,对 IL-2Rα的预测结合亲和力更强。RMSF 分析表明,自由 IL-2 和设计突变体的结构波动相似,表明突变并未改变负责 IL-2 稳定性和折叠的分子内力。这些设计的 IL-2 突变体可能对癌症免疫治疗有潜在的益处。

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