Engineering Orthogonal Polypeptide GalNAc-Transferase and UDP-Sugar Pairs
- Authors
- Choi, Junwon; Wagner, Lauren J. S.; Timmermans, Suzanne B. P. E.; Malaker, Stacy A.; Schumann, Benjamin; Gray, Melissa A.; Debets, Marjoke F.; Takashima, Megumi; Gehring, Jase; Bertozzi, Carolyn R.
- Issue Date
- 2019-08-28
- Publisher
- AMER CHEMICAL SOC
- Citation
- JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, v.141, no.34, pp.13442 - 13453
- Abstract
- O-Linked alpha-N-acetylgalactosamine (O-GalNAc) glycans constitute a major part of the human glycome. They are difficult to study because of the complex interplay of 20 distinct glycosyltransferase isoenzymes that initiate this form of glycosylation, the polypeptide N-acetylgalactosaminyltransferases (GalNAc-Ts). Despite proven disease relevance, correlating the activity of individual GalNAc-Ts with biological function remains challenging due to a lack of tools to probe their substrate specificity in a complex biological environment. Here, we develop a "bump-hole" chemical reporter system for studying GalNAc-T activity in vitro. Individual GalNAc-Ts were rationally engineered to contain an enlarged active site (hole) and probed with a newly synthesized collection of 20 (bumped) uridine diphosphate N-acetylgalactosamine (UDP-GalNAc) analogs to identify enzyme-substrate pairs that retain peptide specificities but are otherwise completely orthogonal to native enzyme-substrate pairs. The approach was applicable to multiple GalNAc-T isoenzymes, including GalNAc-T1 and -T2 that prefer nonglycosylated peptide substrates and GalNAcT-10 that prefers a preglycosylated peptide substrate. A detailed investigation of enzyme kinetics and specificities revealed the robustness of the approach to faithfully report on GalNAc-T activity and paves the way for studying substrate specificities in living systems.
- Keywords
- N-ACETYLGALACTOSAMINYLTRANSFERASE FAMILY; O-GLYCOSYLATION; CATALYTIC-DOMAIN; LECTIN DOMAINS; GLYCOPEPTIDE; GLYCOPROTEOME; BIOSYNTHESIS; EXPRESSION; MEMBERS; PYROPHOSPHORYLASE; N-ACETYLGALACTOSAMINYLTRANSFERASE FAMILY; O-GLYCOSYLATION; CATALYTIC-DOMAIN; LECTIN DOMAINS; GLYCOPEPTIDE; GLYCOPROTEOME; BIOSYNTHESIS; EXPRESSION; MEMBERS; PYROPHOSPHORYLASE
- ISSN
- 0002-7863
- URI
- https://pubs.kist.re.kr/handle/201004/119664
- DOI
- 10.1021/jacs.9b04695
- Appears in Collections:
- KIST Article > 2019
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