PO.IM01.11 · 免疫学
唾液酸抑制衔接器介导的T细胞活化
Sialic acid inhibits engager-mediated T cell activation
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:尽管基于T细胞的疗法在某些肿瘤类型中取得了显著成功,但仍有大部分接受癌症免疫治疗的患者疾病进展。因此,识别并阻断介导免疫抑制的替代通路引起了广泛关注。除了经典的基于蛋白质的免疫检查点外,肿瘤相关糖基化——尤其是高唾液酸化——已成为免疫抑制的关键调节因子。肿瘤细胞上含唾液酸的聚糖被认为是糖免疫检查点,能够结合免疫细胞上的抑制性Siglec受体。虽然肿瘤唾液酸化的免疫抑制作用已得到充分确立[1],但新证据表明T细胞自身的唾液酸化[2]也可能促进免疫功能障碍,提示肿瘤微环境中存在一个此前未被充分认识的糖调控层面。
方法:用泛唾液酸酶处理人T细胞,以酶促方式去除表面唾液酸。随后用抗CD3/抗CD28刺激去唾液酸化的T细胞,或将其与双特异性T细胞衔接器和肿瘤靶细胞共培养,继而进行流式细胞术分析。通过单细胞RNA测序结合基于凝集素的聚糖分析,对慢性淋巴细胞白血病(CLL)患者的原代样本进行分析。
结果:我们发现,经唾液酸酶处理的T细胞表现出增强的增殖和活化。在双特异性T细胞衔接器与靶细胞的共培养系统中,我们证明经唾液酸酶处理的T细胞显示出增强的细胞毒性,包括细胞因子产生增加、T细胞增殖和肿瘤细胞杀伤增强。在研究T细胞亚群时,我们观察到唾液酸酶处理尤其降低了初始T细胞的活化阈值。我们的发现利用慢性淋巴细胞白血病(CLL)患者的原代样本得到验证:唾液酸重塑改善了免疫功能。
结论:T细胞上的唾液酸显著调节其功能。以酶促方式去除这些聚糖可增强T细胞反应,并可能有助于克服癌症免疫治疗中的耐药机制。未来研究将探讨T细胞亚型间不同的聚糖特征是否与功能异质性相关。[1] Dobie, C., Skropeta, D. Br J Cancer 2021, 124, 76-90. [2] Edgar, L. J.; Paulson J. C等. ACS Cent Sci 2021, 7, 1508-1515。
查看英文原文 English abstract
Background: Although T cell-based therapies have led to a significant success in certain tumor types, a large proportion of patients receiving cancer immunotherapy still progress with the disease. Thus, there is interest in identifying and blocking alternative pathways mediating immune suppression. Beyond canonical protein-based immune checkpoints, tumor-associated glycosylation-particularly hypersialylation-has emerged as a key modulator of immune suppression. Sialic acid-containing glycans on tumor cells are recognized as glyco-immune checkpoints that engage inhibitory Siglec receptors on immune cells. While the immunosuppressive role of tumor sialylation is well established [1] , new evidence indicates that sialylation of the T cells themselves [2] may also contribute to immune dysfunction, suggesting a previously underappreciated layer of glyco-regulation in the tumor microenvironment.
Methods: Human T cells were treated with pan-sialidase to enzymatically remove surface sialic acids. Desialylated T cells were then stimulated with anti-CD3/anti-CD28 or co-cultured with bispecific T cell engagers and tumor target cells, followed by flow cytometry. Primary samples from patients with chronic lymphocytic leukemia (CLL) were analyzed through single-cell RNA sequencing combined with lectin-based glycan profiling.
Results: We discovered that T cells treated with sialidase exhibited enhanced proliferation and activation. In a co-culture system with bispecific T cell engagers and target cells, we demonstrated that sialidase-treated T cells showed enhanced cytotoxicity, including increased cytokine production, T cell proliferation, and tumor cell killing. When studying T cell subsets, we observed that sialidase treatment lowered the activation threshold particularly in naïve T cells. Our findings were validated using primary samples from patients with chronic lymphocytic leukemia (CLL): sialic acid remodeling led to improved immune function.
Conclusion: Sialic acids on T cells significantly modulate their function. Enzymatic removal of these glycans enhances T cell response and may help overcome resistance mechanisms in cancer immunotherapy. Future studies will investigate whether distinct glycan signatures among T cell subtypes correlate with functional heterogeneity. [1] Dobie, C., Skropeta, D. Br J Cancer 2021 ,124, 76-90. [2] Edgar, L. J.; Paulson J. C et al. ACS Cent Sci 2021 , 7, 1508-1515.
利益披露 Disclosure
J. Nimmerfroh, None..
D. Heiligensetzer, None..
M. Sandholzer, None..
A. Börsch, None..
H. Laubli, None.