Authors
Andjelkovic, M., Belen-Aguilar, J. F., Belda, D., Ruiz-Pernia, J. J., Tunon, I., Mingarro, I.
Abstract
Protein N-glycosylation is catalysed by the oligosaccharyltransferase (OST) complex, yet how local sequon composition controls substrate selection by human OST remains poorly understood. Here we combine atomistic molecular dynamics, alchemical free-energy calculations, in cellulo glycosylation assays and human glycoproteome analysis to define the molecular basis of sequence-dependent N-glycosylation. We built, to our knowledge, the first atomistic model of human OST with both the lipid-linked oligosaccharide donor and an acceptor peptide simultaneously accommodated in a catalytically competent complex. Simulations show that conserved STT3 motifs stabilize the acceptor Asn and explain how substitutions at positions 0, +1 and +2 alter binding and productive geometry. Cellular assays in HEK 293T cells validate the predicted loss of glycosylation for N0Q sequon, +1 Pro and the +2 hierarchy Thr > Ser >> Cys. Analysis of 14,800 human glycosites confirms these rules at proteome scale.
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bioRxiv
The authors list and abstract were imported from bioRxiv on 08 Sep 2026.
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