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用于探究 T 细胞运动性的细胞因子信号通路基因诱导型协调器

英文原题:Genetically inducible coordinators of cytokine signaling pathways for interrogating T cell motility.

查看英文原题

Genetically inducible coordinators of cytokine signaling pathways for interrogating T cell motility.

PubMed 2026/09/22(内容时间) bioRxiv

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中文摘要

嵌合抗原受体(CAR)T细胞疗法在治疗血液系统恶性肿瘤方面前景广阔,但将这一成功扩展至实体瘤治疗仍面临挑战。改善T细胞表型以满足这一需求是可取的,其中一项特性是增加T细胞向肿瘤的浸润。一种有前景的潜在方法是通过工程化受体重编程细胞因子信号传导,以改变T细胞对环境线索的响应方式。然而,我们目前缺乏工具和机制性理解来迭代和改进此类策略。值得注意的是,重编程信号传导的受体会使旁分泌效应与信号诱导剂所赋予的效应难以解耦。为弥补这一空白,我们开发了一种遗传可诱导的蛋白质工具包,称为运动相关通路组成性激活因子(CAMPs)。

展开英文摘要原文

Chimeric antigen receptor (CAR) T cell therapy is promising for treating hematologic malignancies, but extending this success to treat solid tumors is challenging. Improving T cell phenotype to address this need is desirable, and one such property is increasing T cell infiltration into tumors. A promising potential approach comprises rewiring cytokine signaling using engineered receptors to change how the T cell responds to environmental cues.

However, we currently lack the tools and mechanistic understanding to iterate and improve upon such strategies.

Notably, receptors that rewire signaling make it challenging to decouple paracrine effects from those conferred by the signaling inducer. To address this gap, we developed a genetically inducible toolkit of proteins termed Constitutive Activators of Motility-associated Pathways (CAMPs).

Building on prior knowledge, CAMPs incorporate domains from IL5R (interleukin-5 receptor) and TNFR (tumor necrosis factor receptor) to place cytokine-associated signaling under direct genetic control, such that expression of a CAMP using a small molecule cue or a condition-responsive promoter induces CAMP signaling.

We first identified receptor configurations driving constitutive signaling through targeted pathways. TNFR-based signaling modules drove NF-κB activation across diverse receptor designs, while IL5R-based signaling modules exhibited stringent requirements for membrane-proximity and organization of subunits.

We engineered primary human T cells with inducible CAMP circuits, enabling us to probe pathway-specific effects on motility and transcriptomic responses. Pharmacological induction of motility-associated programs downstream of PKC (protein kinase C) was shown to be feasible and dependent on T cell activation state.

CAMP induction drove an inflammatory program, particularly when signaling through both NF-κB and STAT5, but none of the conditions tested enhanced 3D motility in our assay. Altogether, our findings are consistent with a model in which migratory behavior may be coupled and regulated by multiple stimuli.

These findings and new CAMP tools provide a foundation for interrogating and ultimately harnessing motility for improved T cell therapy performance.

论文信息

作者
Schreiber YR、Keller MR、Bower XS、Fuller EC、Woo J、Memmos N、Odde DJ、Leonard JN
文献类型
预印本
期刊
bioRxiv : the preprint server for biology2026 Sep 22
原文标识
PubMed 42818027 · DOI 10.64898/2026.09.21.753259