An ultrasensitive and modular platform to detect Siglec ligands and control immune cell function
Jame-Chenarboo, Z.; Schmidt, E. N.; Crichton, M.; Takahashi-Yamashiro, K.; Lima, G. M.; Luna-Dulcey, L.; Jung, J.; Ivison, S.; St. Laurent, C. D.; Enterina, J. R.; Lin, S.-Y.; Sarkar, S.; John, R.; Nanjappa, S. G.; Malaker, S. A.; Levings, M. K.; Marth, J. D.; Derda, R.; Macauley, M. S.
Show abstract
Siglecs are immunomodulatory receptors that regulate immune cell function. A fundamental challenge in studying Siglec-ligand interactions is the low affinity of Siglecs for their ligands. Inspired by how nature uses multivalency, we developed Siglec-liposomes as a highly multivalent and versatile platform for detecting Siglec glycan ligands in which recombinant Siglecs were conjugated to liposomes using the SpyCatcher-SpyTag system. Siglec-liposomes offer tunable multivalency and a modular assembly, enabling presentation of different Siglecs on the same liposome. Using Siglec-liposomes, we profiled Siglec ligands on human leukocytes, revealing new insights into Siglec ligands. Moreover, Siglec-liposomes are in vivo compatible, where we demonstrated that Siglec-7-liposomes bind to the brain vasculature in a mucin-dependent manner. Given the abundance of Siglec ligands on T cells, we investigated whether Siglec-liposomes modulate T cell function and find that Siglec-7-liposomes increase T cell proliferation in a ST3Gal1-dependent and CD43-independent manner. Taken together, Siglec-liposomes are a versatile and sensitive tool for detecting Siglec ligands and immunomodulation.
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