PO.CL05.08 · 临床研究
一种可调节的白介素-18(IL-18)平台,经工程化设计以完全逃逸诱饵受体IL-18结合蛋白(IL-18BP)
A tunable interleukin-18 (IL-18) platform engineered for complete escape from the decoy receptor IL-18 binding protein (IL-18BP)
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:IL-18是一种强效免疫细胞因子,可促进CD8⁺T细胞和NK细胞介导的抗肿瘤反应。其治疗潜力受到IL-18BP快速中和、稳定性差、半衰期短和全身毒性的限制。多项努力尝试生成可逃逸IL-18BP中和的IL-18变体,但目前的变体要么保留残余IL-18BP结合,要么需要大量突变。我们的目标是以最少的突变产生对IL-18BP完全耐受的IL-18变体,同时通过结合IL-18受体(IL-18R1)维持可控的IL-18活性。
方法:利用我们AI驱动的智能生物分子发现平台进行结构建模,我们鉴定出对IL-18BP和IL-18R1相互作用至关重要的氨基酸。通过定点诱变构建组合IL-18文库并展示于酵母上。通过FACS富集丧失IL-18BP结合但保留IL-18R1相互作用的变体。对阳性克隆的DNA编码序列进行Sanger测序,亚克隆入哺乳动物表达载体,并纯化重组蛋白。通过ELISA确认IL-18R1特异性结合和IL-18BP逃逸,并通过生物层干涉法测定结合KD。在存在5 μg/mL IL-18BP的条件下,通过人PBMCs的IFN-gamma产生评估功能活性。
结果:我们最初鉴定出一个名为E8的阳性克隆,其对IL-18BP的结合亲和力降低。我们进一步从基于E8序列的二级文库中获得了200多个完全丧失IL-18BP结合的克隆。多序列比对显示,具有少量氨基酸突变的克隆可完全消除IL-18BP结合,同时保留最低限度的IL-18R1相互作用。此外,鉴定出特定氨基酸位点,其单个或组合突变可恢复IL-18R1亲和力。特异性相关和亲和力相关氨基酸的组合突变产生了100多种IL-18变体,其IL-18R1结合KD范围为10⁻⁹至10⁻⁷ M,并完全丧失IL-18BP结合。尽管存在高水平IL-18BP,代表性变体仍以分级的IFN-gamma反应激活人PBMCs。一种代表性变体与抗PD-1 IgG融合,在小鼠MC38肿瘤模型中显示出98%的肿瘤生长抑制。
结论:我们开发了一系列工程化IL-18变体(IL-18v),可完全逃逸IL-18BP中和,同时提供可调节的IL-18R1亲和力。这一IL-18v平台可实现可定制的细胞因子效力,并支持多样化的研究和治疗应用,包括整合入融合蛋白、靶向细胞因子疗法和下一代免疫治疗策略。
查看英文原文 English abstract
Background: IL-18 is a potent immune cytokine that promotes CD8⁺ T-cell- and NK-cell-mediated antitumor responses. Its therapeutic potential is limited by rapid neutralization by IL-18BP, poor stability, short half-life, and systemic toxicity. Multiple efforts have attempted to generate IL-18 variants that escape IL-18BP neutralization, but current variants either retain residual IL-18BP binding or require extensive mutations. Our goal was to produce IL-18 variants fully resistant to IL-18BP with minimal mutations while maintaining controlled IL-18 activity via engaging the IL-18 receptor (IL-18R1).
Methods: Using structural modeling with our AI-driven Intelligent Biomolecular Discovery Platform, we identified amino acids critical for IL-18BP and IL-18R1 interactions. A combinatorial IL-18 library was constructed by site-directed mutagenesis and displayed on yeast. Variants that lost IL-18BP binding but retained IL-18R1 interaction were enriched by FACS. DNA coding sequences of positive clones were Sanger sequenced, subcloned into mammalian expression vector. And recombinant proteins were purified. IL-18R1-specific binding and IL-18BP escape were confirmed by ELISA, and binding KDs were determined by bio-layer interferometry. Functional activity was assessed by IFN-gamma production from human PBMCs in the presence of 5 µg/mL IL-18BP.
Results: We initially identified a positive clone named E8 which showed reducing binding affinity to IL-18BP. We further obtained more than 200 clones which completely lost binding to IL-18BP from a secondary library based on the sequence of E8. Multiple sequence alignment revealed that clones with few amino acid mutations could fully abolish IL-18BP binding while retaining minimal IL-18R1 interaction. In addition, specific amino acid positions were identified whose single or combined mutation restored IL-18R1 affinity. Combinatorial mutations of specificity-related and affinity-related amino acids yielded a panel of over 100 IL-18 variants with IL-18R1 binding KDs ranging from 10⁻⁹ to 10⁻⁷ M and complete loss of IL-18BP binding. Representative variants activated human PBMCs with graded IFN-gamma responses despite presence of high IL-18BP levels. One representative variant was fused to a anti-PD-1 IgG and demonstrated a tumor growth inhibition of 98% in mouse MC38 tumor model.
Conclusion: We developed a series of engineered IL-18 variants (IL-18v) that fully escape IL-18BP neutralization while providing tunable IL-18R1 affinity. This IL-18v platform enables customizable cytokine potency and supports diverse research and therapeutic applications, including incorporation into fusion proteins, targeted cytokine therapies, and next-generation immunotherapy strategies.
利益披露 Disclosure
H. Huang, None..
W. Peng, None..
R. Zhu, None..
Q. Li, None..
L. Ji, None..
Y. Lu, None..
D. Wei, None..
Y. Wu, None..
T. Ying, None.