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癌症相关的 O-GalNAc 糖基化改变

英文原题:Cancer-associated alterations in O-GalNAc glycosylation.

查看英文原题

Cancer-associated alterations in O-GalNAc glycosylation.

PubMed 2026/07/31(内容时间) Glycobiology Q3 · IF 3.3(JCR 2025)

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中文摘要

Tn、STn和T等异常O-GalNAc聚糖是最一致的肿瘤相关碳水化合物抗原之一,在癌组织中广泛表达,但在健康上皮中基本缺失。与此同时,O-聚糖还可被修饰以携带功能性基序,如Lewis抗原。癌症相关O-聚糖并非简单地从延伸结构转变为截短结构,而是形成由截短和延伸糖型组成的异质性库,在肿瘤糖萼中共存。

总体而言,短链和延伸的癌症相关O-聚糖通过同时影响多种癌症标志性特征——包括黏附、受体信号传导、播散和免疫逃逸——共同驱动肿瘤形成。后者通过与聚糖结合蛋白的相互作用发生,包括Selectins、Siglecs、巨噬细胞半乳糖型凝集素(MGL)和galectins。尤其是截短O-聚糖在癌症各阶段的稳定表达,以及其对癌症进展的驱动作用,使短链截短O-聚糖成为有吸引力的治疗靶点。尽管早期疫苗方法疗效有限,但将O-聚糖识别与强效效应机制偶联的策略已显示出前景。这包括靶向O-聚糖的CAR-T 细胞(CAR-Ts)、T细胞双特异性抗体(TCBs),尤其是抗体药物偶联物(ADCs),后者已展现出强效的临床前活性。展望未来,多特异性抗体、生物正交化学和人工智能驱动的工程化有望增强安全性、选择性并改善患者分层,从而帮助在精准肿瘤学中进一步利用O-GalNAc聚糖。

展开英文摘要原文

Aberrant O-GalNAc glycans such as Tn, STn, and T are among the most consistent tumor-associated carbohydrate antigens, broadly expressed on carcinomas but largely absent from healthy epithelia. In parallel, O-glycans can also be modified to carry functional motifs, such as Lewis antigens. Rather than a simple shift from elongated to truncated structures, cancer-associated O-glycans form a heterogeneous repertoire of truncated and elongated glycoforms that coexist across the tumor glycocalyx. Collectively, both short and elongated cancer-associated O-glycans co-drive tumor formation through their simultaneous influence on multiple cancer hallmarks, including adhesion, receptor signaling, dissemination, and immune evasion. The latter occurs through interactions with glycan-binding proteins including Selectins, Siglecs, macrophage galactose-type lectin (MGL), and galectins.

The stable expression of especially truncated O-glycans across cancer stages, as well as their driving influence on cancer progression, make short, truncated O-glycans attractive therapeutic targets. While early vaccine approaches had limited efficacy, strategies that couple O-glycan recognition with potent effector mechanisms have shown promise.

This includes O-glycan-directed chimeric antigen receptor T cells (CARTs), T-cell bispecifics (TCBs), and particularly antibody-drug conjugates (ADCs), which have demonstrated strong preclinical activity. Looking forward, multi-specific antibodies, bio-orthogonal chemistry, and artificial intelligence-driven engineering are expected to enhance safety, selectivity, and improve patient stratification, helping to further exploit O-GalNAc glycans in precision oncology.

论文信息

作者
Pires J、Rochat E、Bagdonaite I、Dabelsteen S、Wandall HH
单位
Copenhagen Center for Glycocalyx Research, University of Copenhagen, Blegdamsvej 3B, 2200 Copenhagen, Denmark.Denmark
文献类型
综述
期刊
Glycobiology2026 Jul 31
原文标识
PubMed 42340347 · DOI 10.1093/glycob/cwag049