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Siglec-1-targeting single domain antibodies block or enhance pathogen binding to dendritic cells.

Hendrik J Brink ,
Alsya J Affandi ,
Shirley Man ,
Noah C C T Dekker ,
Enno A Großewichtrup ,
Rianne G Bouma ,
Negisa Seyed Toutounchi ,
Veronique A L Konijn ,
Joeke G C Stolwijk ,
John L van Hamme ,
Katarzyna Olesek ,
Dijmphna A M Heijnen ,
Alexander Fish ,
Angeliki Moutsiopoulou ,
Patrick H N Celie ,
Gillian Dekkers ,
Raimond Heukers ,
Enrico Mastrobattista ,
Martine J Smit ,
Yvette van Kooyk ,
Marit J van Gils ,
Astrid P Heikema ,
Neeltje A Kootstra ,
Teunis B H Geijtenbeek ,
Joke M M den Haan

Abstract

Siglec-1 (Sialoadhesin/CD169), expressed on myeloid cells, is a receptor for sialic acids that mediates adhesion to host cells and pathogens. However, certain pathogens exploit Siglec-1 binding for further dissemination and interfering with this binding may serve as potential therapeutic interventions. Here we identified high-affinity single domain antibodies, (also known as VHHs or Nanobodies) that allo- or orthosterically modulate ligand binding of Siglec-1. VHH clone 2C2 bound directly to the ligand binding site of Siglec-1 and effectively blocked binding of a diverse set of ligands, such as ganglioside liposomes, Campylobacter jejuni, and SARS-CoV-2, to monocyte-derived dendritic cells (moDCs) and ex vivo Siglec-1+ DCs. In contrast, VHH 1B5 and 1C1 bound outside of the ligand binding site and enhanced Siglec-1 interactions with ganglioside liposomes and Campylobacter jejuni. Mechanistically, VHH 1B5 and 1C1 appear to interfere with the cis-binding sialic acids present on the Siglec-1-expressing cell surface, thereby facilitating increased trans-interactions with ligands. In conclusion, we have isolated VHH that bind to different sites on Siglec-1 and thereby enhance or block ligand binding to a variety of sialylated pathogens. Moreover, unlike conventional blocking antibodies targeting specific pathogens, Siglec-1 binding VHH may serve as broad-spectrum pathogen blocking agents.

More about this publication

The Journal of biological chemistry

Pages 113542
Publication date 08-09-2026

Full text links

Publisher website (DOI) 10.1016/j.jbc.2026.113542
Europe PubMed Central 42710659
Pubmed 42710659

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