研究概要
嵌合抗原受体(CAR)-T 细胞疗法是一种变革性免疫疗法,通过工程化改造 T 细胞,使其能够选择性靶向并清除癌细胞。
中文摘要
嵌合抗原受体(CAR)-T细胞疗法是一种变革性免疫疗法,通过工程化改造T细胞,使其选择性靶向并清除癌细胞。尽管在血液系统恶性肿瘤中高度有效,但仍面临抗原逃逸、抗原结合欠佳以及CAR-T 细胞持久性有限等挑战。虽然目前FDA批准的CAR-T 疗法主要靶向CD19和BCMA,但将CAR-T 技术扩展至靶向CD20——B细胞恶性肿瘤中的关键抗原——仍然至关重要。CD20的膜近端位置及其短的胞外表位带来了独特的结合挑战,可能降低CAR-T 疗效。为解决这一问题,我们采用分子建模策略,以Ofatumumab——一种全人源单克隆抗体——作为工程化CAR-scFv的框架,重点研究其与膜结合CD20的结合模式、稳定性和亲和力。我们研究了引入不同连接区,特别是Whitlow和G 4 S 3连接区,对scFv性能的结构和功能影响。分子动力学(MD)模拟、自由能景观分析和动态交叉相关矩阵显示,scFv-Whitlow维持稳定的动态框架,其V H和V L结构域可灵活、独立运动,支持功能稳健性,而scFv-G 4 S 3则表现出结构完整性得以保留的动态特征。分子对接和MD模拟确定CD20的胞外环2(ECL2)是关键相互作用位点。值得注意的是,结合能计算表明,scFv-Whitlow对CD20的结合亲和力(-37.12 kcal/mol)高于scFv-G 4 S 3(-27.97 kcal/mol),凸显其更优越的相互作用动力学。这些发现表明scFv-Whitlow是抗CD20 CAR-T 细胞治疗的一个有前景的候选者,并为靶向CD20的下一代CAR结构的合理设计提供了有价值的见解。
展开英文摘要原文
Chimeric Antigen Receptor (CAR)-T cell therapy is a transformative immunotherapy that engineer's T cells to selectively target and eliminate cancer cells. While highly effective in hematological malignancies, challenges such as antigen escape, suboptimal antigen binding, and limited CAR-T cell persistence. Although current FDA-approved CAR-T therapies primarily target CD19 and BCMA, expanding CAR-T technology to target CD20, a key antigen in B-cell malignancies, remains critical. The membrane-proximal location of CD20 and its short extracellular epitopes pose unique binding challenges, potentially reducing CAR-T efficacy. To address this, we employed a molecular modeling strategy using Ofatumumab, a fully human monoclonal antibody, as the framework for engineering CAR-scFvs, focusing on their binding mode, stability, and affinity towards membrane-bound CD20. We investigated the structural and functional impact of incorporating different linker regions, specifically the Whitlow and G 4 S 3 linkers, on scFv performance. Molecular dynamics (MD) simulations, free energy landscape analysis and dynamics cross-correlation matrix revealed that scFv-Whitlow maintains a stable dynamic framework with flexible, independently moving V H and V L domains, supporting functional robustness, while scFv-G 4 S 3 showed dynamics with preserved structural integrity. Molecular docking and MD simulations identified the extracellular loop 2 (ECL2) of CD20 as a key interaction site. Notably, binding energy calculations indicated higher binding affinity of scFv-Whitlow (-37.12 kcal/mol) for CD20 compared to scFv-G 4 S 3 (-27.97 kcal/mol), highlighting its superior interaction dynamics. These findings position scFv-Whitlow as a promising candidate for anti-CD20 CAR-T cell therapy and provide valuable insights for the rational design of next-generation CAR constructs targeting CD20.
论文信息
- 作者
- Khodke P、Kumbhar BV
- 第一作者单位
- Department of Biological Sciences, Sunandan Divatia School of Science, SVKM's Narsee Monjee Institute of Management Studies (NMIMS) Deemed-to-be University, Vile Parle (West), Mumbai 400056, Maharashtra, India.India
- 通讯作者单位
- Department of Biological Sciences, Sunandan Divatia School of Science, SVKM's Narsee Monjee Institute of Management Studies (NMIMS) Deemed-to-be University, Vile Parle (West), Mumbai 400056, Maharashtra, India. Electronic address: bajarang.kumbhar@nmims.edu.India
- 期刊
- Computers in biology and medicine2026 Jan 1