Structural and mechanistic insight into N-glycan processing by endo-alpha-mannosidase

Andrew J. Thompson, Rohan J. Williams, Zalihe Hakki, Dominic S. Alonzi, Tom Wennekes, Tracey M. Gloster, Kriangsak Songsrirote, Jane E. Thomas-Oates, Tanja M. Wrodnigg, Josef Spreitz, Arnold E. Stuetz, Terry D. Butters, Spencer J. Williams, Gideon J. Davies*

*Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

N-linked glycans play key roles in protein folding, stability, and function. Biosynthetic modification of N-linked glycans, within the endoplasmic reticulum, features sequential trimming and readornment steps. One unusual enzyme, endo-α-mannosidase, cleaves mannoside linkages internally within an N-linked glycan chain, short circuiting the classical N-glycan biosynthetic pathway. Here, using two bacterial orthologs, we present the first structural and mechanistic dissection of endo-α-mannosidase. Structures solved at resolutions 1.7–2.1 Å reveal a (β/α)8 barrel fold in which the catalytic center is present in a long substrate-binding groove, consistent with cleavage within the N-glycan chain. Enzymatic cleavage of authentic Glc1/3Man9GlcNAc2 yields Glc1/3-Man. Using the bespoke substrate α-Glc-1,3-α-Man fluoride, the enzyme was shown to act with retention of anomeric configuration. Complexes with the established endo-α-mannosidase inhibitor α-Glc-1,3-deoxymannonojirimycin and a newly developed inhibitor, α-Glc-1,3-isofagomine, and with the reducing-end product α-1,2-mannobiose structurally define the -2 to +2 subsites of the enzyme. These structural and mechanistic data provide a foundation upon which to develop new enzyme inhibitors targeting the hijacking of N-glycan synthesis in viral disease and cancer.
Original languageEnglish
Pages (from-to)781-786
JournalProceedings of the National Academy of Sciences of the United States of America
Volume109
Issue number3
DOIs
Publication statusPublished - 2012
Externally publishedYes

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