4.7 Article

Glycosylation of Receptor Binding Domain of SARS-CoV-2 S-Protein Influences on Binding to Immobilized DNA Aptamers

期刊

出版社

MDPI
DOI: 10.3390/ijms23010557

关键词

coronavirus; SARS-CoV-2; aptamers; receptor-binding domain; spike glycoprotein; biolayer interferometry; dissociation constants; sensor surface

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  1. Russian Foundation for Basic Research [20-04-60477]

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Study on nucleic acid aptamers specific to S-protein and its receptor binding domain reveals their sensitivity to glycosylation patterns and biotinylation sites, highlighting the importance of careful testing for new viral variants in the development of specific therapy and biosensors.
Nucleic acid aptamers specific to S-protein and its receptor binding domain (RBD) of SARS-CoV-2 (severe acute respiratory syndrome-related coronavirus 2) virions are of high interest as potential inhibitors of viral infection and recognizing elements in biosensors. Development of specific therapy and biosensors is complicated by an emergence of new viral strains bearing amino acid substitutions and probable differences in glycosylation sites. Here, we studied affinity of a set of aptamers to two Wuhan-type RBD of S-protein expressed in Chinese hamster ovary cell line and Pichia pastoris that differ in glycosylation patterns. The expression system for the RBD protein has significant effects, both on values of dissociation constants and relative efficacy of the aptamer binding. We propose glycosylation of the RBD as the main force for observed differences. Moreover, affinity of a several aptamers was affected by a site of biotinylation. Thus, the robustness of modified aptamers toward new virus variants should be carefully tested.

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