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解析抗sTn抗体特异性的分子基础

Decoding the Molecular Basis of the Specificity of an Anti-sTn Antibody.

作者信息

Soares Cátia O, Laugieri Maria Elena, Grosso Ana Sofia, Natale Mariangela, Coelho Helena, Behren Sandra, Yu Jin, Cai Hui, Franconetti Antonio, Oyenarte Iker, Magnasco Maria, Gimeno Ana, Ramos Nuno, Chai Wengang, Corzana Francisco, Westerlind Ulrika, Jiménez-Barbero Jesús, Palma Angelina S, Videira Paula A, Ereño-Orbea June, Marcelo Filipa

机构信息

UCIBIO-Applied Molecular Biosciences Unit, Department of Chemistry, NOVA School of Science and Technology, NOVA University Lisbon, 2829-516 Caparica, Portugal.

Associate Laboratory i4HB, Institute for Health and Bioeconomy, NOVA School of Science and Technology, NOVA University Lisbon, 2829-516 Caparica, Portugal.

出版信息

JACS Au. 2024 Dec 16;5(1):225-236. doi: 10.1021/jacsau.4c00921. eCollection 2025 Jan 27.

Abstract

The mucin -glycan sialyl Tn antigen (sTn, Neu5Acα2-6GalNAcα1--Ser/Thr) is an antigen associated with different types of cancers, often linked with a higher risk of metastasis and poor prognosis. Despite efforts to develop anti-sTn antibodies with high specificity for diagnostics and immunotherapy, challenges in eliciting high-affinity antibodies for glycan structures have limited their effectiveness, leading to low titers and short protection durations. Experimental structural insights into anti-sTn antibody specificity are lacking, hindering their optimization for cancer cell recognition. In this study, we used a comprehensive structural approach, combining X-ray crystallography, NMR spectroscopy, computational methods, glycan/glycopeptide microarrays, and biophysical techniques, to thoroughly investigate the molecular basis of sTn recognition by L2A5, a novel preclinical anti-sTn monoclonal antibody (mAb). Our data unequivocally show that the L2A5 fragment antigen-binding (Fab) specifically binds to core sTn moieties. NMR and X-ray structural data suggest a similar binding mode for the complexes formed by the sTn moiety linked to Ser or Thr and the L2A5 Fab. The sugar moieties are similarly oriented in the paratope of mAb, with the Neu5Ac moiety establishing key interactions with the receptor and the GalNAc moiety providing additional contacts. Furthermore, L2A5 exhibits fine specificity toward cancer-related MUC1 and MUC4 mucin-derived sTn glycopeptides, which might contribute to its selective targeting against tumor cells. This newfound knowledge holds promise for the rational improvement and potential application of this anti-sTn antibody in diagnosis and targeted therapy against sTn expressing cancers such as breast, colorectal, and bladder cancer, improving patient care.

摘要

黏蛋白聚糖唾液酸化Tn抗原(sTn,Neu5Acα2-6GalNAcα1--Ser/Thr)是一种与不同类型癌症相关的抗原,常与更高的转移风险和不良预后相关。尽管人们努力开发对诊断和免疫治疗具有高特异性的抗sTn抗体,但针对聚糖结构产生高亲和力抗体面临的挑战限制了它们的有效性,导致抗体滴度低且保护持续时间短。目前缺乏关于抗sTn抗体特异性的实验结构见解,这阻碍了它们针对癌细胞识别的优化。在本研究中,我们采用了一种综合结构方法,结合X射线晶体学、核磁共振光谱、计算方法、聚糖/糖肽微阵列和生物物理技术,全面研究新型临床前抗sTn单克隆抗体(mAb)L2A5识别sTn的分子基础。我们的数据明确表明,L2A5的片段抗原结合(Fab)特异性结合核心sTn部分。核磁共振和X射线结构数据表明,与丝氨酸或苏氨酸相连的sTn部分与L2A5 Fab形成的复合物具有相似的结合模式。糖部分在单克隆抗体的互补决定区中取向相似,Neu5Ac部分与受体建立关键相互作用,GalNAc部分提供额外的接触。此外,L2A5对癌症相关的MUC1和MUC4黏蛋白衍生的sTn糖肽表现出良好的特异性,这可能有助于其对肿瘤细胞的选择性靶向。这一新发现的知识有望合理改进这种抗sTn抗体,并将其潜在应用于诊断和针对表达sTn的癌症(如乳腺癌、结直肠癌和膀胱癌)的靶向治疗,从而改善患者护理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c7e/11775696/53be267d2658/au4c00921_0001.jpg

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