Authors
Alex Yoshikawa, Alexandra Rangel, Trevor Feagin, Elizabeth Chun, Leighton Wan, Anping Li, Leonhard Möckl, Diana Wu, Michael Eisenstein, Sharon Pitteri, H. Tom Soh
Publication date
2021/12/7
Journal
Nature Communications
Volume
12
Pages
7106
Description
Glycosylation is one of the most abundant forms of post-translational modification, and can have a profound impact on a wide range of biological processes and diseases. Unfortunately, efforts to characterize the biological function of such modifications have been greatly hampered by the lack of affinity reagents that can differentiate protein glycoforms with robust affinity and specificity. In this work, we use a fluorescence-activated cell sorting (FACS)-based approach to generate and screen aptamers with indole-modified bases, which are capable of recognizing and differentiating between specific protein glycoforms. Using this approach, we were able to select base-modified aptamers that exhibit strong selectivity for specific glycoforms of two different proteins. These aptamers can discriminate between molecules that differ only in their glycan modifications, and can also be used to label glycoproteins on the surface of …
Total citations
2022202320246168
Scholar articles