Human Milk Oligosaccharide 2′-Fucosyllactose Inhibits Ligand Binding to C-Type Lectin DC-SIGN but Not to Langerin

Publication date

2022-12

Authors

Mukherjee, ReshmiISNI 0000000492914802
Somovilla, Victor J.ISNI 0000000507443274
Chiodo, Fabrizio
Bruijns, Sven
Pieters, Roland J.ORCID 0000-0003-4723-3584ISNI 0000000391858821
Garssen, JohanORCID 0000-0002-8678-9182ISNI 0000000034097251
van Kooyk, Yvette
Kraneveld, AlettaISNI 000000038803088X
van Bergenhenegouwen, JeroenISNI 0000000419550256

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Article
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cc_by

Abstract

Human milk oligosaccharides (HMOs) and their most abundant component, 2′-Fucosyllactose (2′-FL), are known to be immunomodulatory. Previously, it was shown that HMOs and 2′-FL bind to the C-type lectin receptor DC-SIGN. Here we show, using a ligand-receptor competition assay, that a whole mixture of HMOs from pooled human milk (HMOS) and 2′-FL inhibit the binding of the carbohydrate-binding receptor DC-SIGN to its prototypical ligands, fucose and the oligosaccharide Lewis-B, (Leb) in a dose-dependent way. Interestingly, such inhibition by HMOS and 2′-FL was not detected for another C-type lectin, langerin, which is evolutionarily similar to DC-SIGN. The cell-ligand competition assay using DC-SIGN expressing cells confirmed that 2′-FL inhibits the binding of DC-SIGN to Leb. Molecular dynamic (MD) simulations show that 2′-FL exists in a preorganized bioactive conformation before binding to DC-SIGN and this conformation is retained after binding to DC-SIGN. Leb has more flexible conformations and utilizes two binding modes, which operate one at a time via its two fucoses to bind to DC-SIGN. Our hypothesis is that 2′-FL may have a reduced entropic penalty due to its preorganized state, compared to Leb, and it has a lower binding enthalpy, suggesting a better binding to DC-SIGN. Thus, due to the better binding to DC-SIGN, 2′-FL may replace Leb from its binding pocket in DC-SIGN. The MD simulations also showed that 2′-FL does not bind to langerin. Our studies confirm 2′-FL as a specific ligand for DC-SIGN and suggest that 2′-FL can replace other DC-SIGN ligands from its binding pocket during the ligand-receptor interactions in possible immunomodulatory processes.

Keywords

2′-FL, DC-SIGN, human milk oligosaccharides, langerin, lewis B antigen, Catalysis, Molecular Biology, Spectroscopy, Computer Science Applications, Physical and Theoretical Chemistry, Organic Chemistry, Inorganic Chemistry

Citation

Mukherjee, R, Somovilla, V J, Chiodo, F, Bruijns, S, Pieters, R J, Garssen, J, van Kooyk, Y, Kraneveld, A D & van Bergenhenegouwen, J 2022, 'Human Milk Oligosaccharide 2′-Fucosyllactose Inhibits Ligand Binding to C-Type Lectin DC-SIGN but Not to Langerin', International Journal of Molecular Sciences, vol. 23, no. 23, 14745. https://doi.org/10.3390/ijms232314745