Design of alpha-S-neoglycopeptides derived from MUC1 with a flexible and solvent exposed sugar moiety.

Rojas-Ocáriz Víctor, Compañón Ismael, Aydillo Carlos, Castro-López Jorge, Jimenez-Barbero Jesús, Hurtado-Guerrero Ramon, Avenoza Alberto, Zurbano María, Peregrina Jesús, Busto Jesus and Corzana Francisco. Design of alpha-S-neoglycopeptides derived from MUC1 with a flexible and solvent exposed sugar moiety. Journal of Organic Chemistry (just accepted), 2016.

The use of vaccines based on MUC1 glycopeptides is a promising approach to treat cancer. We present herein several sulfa-Tn antigens incorporated in MUC1 sequences that possess a variable linker between the carbohydrate (GalNAc) and the peptide backbone. The main conformations of these molecules in solution have been evaluated by combining NMR experiments and molecular dynamics simulations. The linker plays a key role in the modulation of the conformation of these compounds at different levels, blocking a direct contact between the sugar moiety and the backbone, promoting a helix-like conformation for the glycosylated residue and favoring the proper presentation of the sugar unit for molecular recognition events. The feasibility of these novel compounds as mimics of MUC1 antigens has been validated by the X-ray diffraction structure of one of these unnatural derivatives complexed to an anti-MUC1 monoclonal antibody. These features, together with potential lack of immune suppression, render these unnatural glycopeptides promising candidates for designing alternative therapeutic vaccines against cancer.

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