bioRxiv · 10.1101/2025.06.10.658867
The unique molecular recognition features of Siglec-10: structural insights into sialoglycan and antibody interactions
Abstract
Siglec-10 is a sialic acid-binding immunoglobulin-like lectin implicated in immune regulation, yet the molecular basis for ligand recognition and how this is functionally linked to immune modulation remains poorly defined. Herein, we present a multidisciplinary study encompassing structural, biochemical, and cellular approaches to elucidate Siglec-10-carbohydrate interactions and their functional consequences. The crystal structure of the extracellular domain of Siglec-10 in complex with 2-6 sialyllactose revealed the presence of two key arginine residues within the Siglec-10 binding site that interact with the carboxyl group of sialic acid, the canonical R119 and R127, suggesting potential dual contributions to ligand engagement. Saturation Transfer Difference (STD)-Nuclear Magnetic Resonance (NMR) confirmed that R119 is essential for sialoglycan binding in solution, whereas R127 appears dispensable for interactions with glycans under these conditions. In contrast, cell-based binding assays using primary human T cells and engineered monocytic lines demonstrated that both arginine residues (R119 and R127) are critical for cellular recognition, revealing a context-dependent interaction. By obtaining direct images at a molecular resolution of 6-7 nm, super-resolution microscopy further revealed glycan-independent dimerization of the Siglec-10 receptor on the surface of human monocytes. Ligand blockade mediated by anti-Siglec-10 mAb (clone S10A) restores CAR-T cell cytotoxicity in vitro, supporting its role as an immune checkpoint receptor. Finally, although CD24 was not identified as a Siglec-10 ligand on T cells, proximity labeling and mass spectrometry uncovered other sialylated glycoproteins that may mediate this interaction. Together, these results identify Siglec-10 as a modulatory receptor with structural and functional features distinct from other Siglec family members and highlight its potential for therapeutic targeting in cancer immunotherapy.
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Sobczak, K., Antonana-Vildosola, A., Valverde, P., Travecedo, M. A., Jame-Chernaboo, Z., Schmidt, E. N., DAndrea, S., Valdaliso-Diez, E., Oyenarte, I., Laugieri, M. E., Joe, M., Mozaneh, F., Lin, S.-Y., Bosch, A., Moure, M. J., Franconetti, A., Lee, S. Y., Etxaniz-Diaz de Durana, J., Perez-Gutierrez, L., Palazon, A., Marcelo, F., Fadda, E., Corzana, F., Gimeno, A., Macauley, M. S., Jimenez-Barbero, J., Ereno-Orbea, J.. 2025-06-10. The unique molecular recognition features of Siglec-10: structural insights into sialoglycan and antibody interactions. https://doi.org/10.1101/2025.06.10.658867
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