Electrophilic proximity-inducing synthetic adapters enhance universal T cell function by covalently enforcing immune receptor signaling

Nickolas J. Serniuck, Eden Kapcan, Duane Moogk, Allyson E. Moore, Benjamin P.M. Lake, Galina Denisova, Joanne A. Hammill, Jonathan L. Bramson, Anthony F. Rullo
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Abstract

Proximity-induction of cell-cell interactions via small molecules represents an emerging field in basic and translational sciences. Covalent anchoring of these small molecules represents a useful chemical strategy to enforce proximity; however, it remains largely unexplored for driving cell-cell interactions. In immunotherapeutic applications, bifunctional small molecules are attractive tools for inducing proximity between immune effector cells like T cells and tumor cells to induce tumoricidal function. We describe a two-component system composed of electrophilic bifunctional small molecules and paired synthetic antigen receptors (SARs) that elicit T cell activation. The molecules, termed covalent immune recruiters (CIRs), were designed to affinity label and covalently engage SARs. We evaluated the utility of CIRs to direct anti-tumor function of human T cells engineered with three biologically distinct classes of SAR. Irrespective of the electrophilic chemistry, tumor-targeting moiety, or SAR design, CIRs outperformed equivalent non-covalent bifunctional adapters, establishing a key role for covalency in maximizing functionality. We determined that covalent linkage enforced early T cell activation events in a manner that was dependent upon each SARs biology and signaling threshold. These results provide a platform to optimize universal SAR-T cell functionality and more broadly reveal new insights into how covalent adapters modulate cell-cell proximity-induction.
亲电亲近性诱导合成适配体通过共价强化免疫受体信号转导增强通用 T 细胞功能
通过小分子诱导细胞-细胞间的相互作用是基础科学和转化科学的一个新兴领域。这些小分子的共价锚定是一种有效的化学策略,可加强接近性;然而,这种策略在很大程度上仍未被用于驱动细胞-细胞相互作用。在免疫治疗应用中,双功能小分子是诱导免疫效应细胞(如 T 细胞)与肿瘤细胞接近以诱导杀瘤功能的有吸引力的工具。我们描述了一种由亲电双功能小分子和成对合成抗原受体(SAR)组成的双组分系统,它能诱导 T 细胞活化。这些分子被称为共价免疫招募剂(CIRs),旨在亲和标记并共价啮合 SARs。我们评估了共价免疫招募剂在引导人类 T 细胞发挥抗肿瘤功能方面的作用。无论亲电化学、肿瘤靶向分子或 SAR 设计如何,CIR 的性能都优于同等的非共价双功能适配体,从而确立了共价在最大化功能方面的关键作用。我们发现,共价连接能以依赖于每种 SAR 的生物学特性和信号阈值的方式强化早期 T 细胞活化事件。这些结果为优化通用 SAR-T 细胞功能提供了一个平台,并更广泛地揭示了共价适配体如何调节细胞-细胞近距离诱导的新见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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