The impact of glycosylation on the structure, function, and interactions of CD14

Author:

Quintana Jon Imanol1,Delgado Sandra1,Rábano Miriam1,Azkargorta Mikel1,Florencio-Zabaleta Mirane1,Unione Luca12,Vivanco Maria dM1,Elortza Félix1,Jiménez-Barbero Jesús12345,Ardá Ana12ORCID

Affiliation:

1. Center for Cooperative Research in Biosciences (CIC bioGUNE), Basque Research and Technology Alliance (BRTA) , Bizkaia Science and Technology Park bld 800, Derio, Bizkaia 48160 , Spain

2. Ikerbasque, Basque Foundation for Science , Euskadi Plaza 5, 48009, Bilbao , Spain

3. Department of Organic & Inorganic Chemistry , Faculty of Science and Technology, , Leioa, Bizkaia 48940 , Spain

4. University of the Basque Country, EHU-UPV , Faculty of Science and Technology, , Leioa, Bizkaia 48940 , Spain

5. Centro de Investigacion Biomedica En Red de Enfermedades Respiratorias , Carlos III Health Institute, C. de Melchor Fernández Almagro, 3, Fuencarral-El Pardo, Madrid 28029 , Spain

Abstract

Abstract CD14 is an innate immune receptor that senses pathogen-associated molecular patterns, such as lipopolysaccharide, to activate the innate immune response. Although CD14 is known to be glycosylated, detailed understanding about the structural and functional significance of this modification is still missing. Herein, an NMR and MS-based study, assisted by MD simulations, has provided a 3D-structural model of glycosylated CD14. Our results reveal the existence of a key N-glycosylation site at Asn282 that exclusively contains unprocessed oligomannnose N-glycans that perfectly fit the concave cavity of the bent-solenoid shaped protein. This site is not accessible to glycosidases and is fundamental for protein folding and secretion. A second N-site at Asn151 displays mostly complex N-glycans, with the typical terminal epitopes of the host cell-line expression system (i.e. βGal, α2,3 and α2,6 sialylated βGal, here), but also particularities, such as the lack of core fucosylation. The glycan at this site points outside the protein surface, resulting in N-glycoforms fully exposed and available for interactions with lectins. In fact, NMR experiments show that galectin-4, proposed as a binder of CD14 on monocytes to induce their differentiation into macrophages-like cells, interacts in vitro with CD14 through the recognition of the terminal glycoepitopes on Asn151. This work provides key information about CD14 glycosylation, which helps to better understand its functional roles and significance. Although protein glycosylation is known to be dynamic and influenced by many factors, some of the features found herein (presence of unprocessed N-glycans and lack of core Fuc) are likely to be protein specific.

Funder

European Research Council

European commission for the GLYCOTWINNING project

Agencia Estatal de Investigación

Severo Ochoa Center of Excellence Accreditation

Instituto de Salud Carlos III

Publisher

Oxford University Press (OUP)

Subject

Biochemistry

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