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A β-hairpin epitope as novel structural requirement for protein arginine rhamnosylation

For canonical asparagine glycosylation, the primary amino acid sequence that directs glycosylation at specific asparagine residues is well-established. Here we reveal that a recently discovered bacterial enzyme EarP, that transfers rhamnose to a specific arginine residue in its acceptor protein EF-P...

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Autores principales: Yakovlieva, Liubov, Wood, Thomas M., Kemmink, Johan, Kotsogianni, Ioli, Koller, Franziska, Lassak, Jürgen, Martin, Nathaniel I., Walvoort, Marthe T. C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179230/
https://www.ncbi.nlm.nih.gov/pubmed/34163919
http://dx.doi.org/10.1039/d0sc05823h
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author Yakovlieva, Liubov
Wood, Thomas M.
Kemmink, Johan
Kotsogianni, Ioli
Koller, Franziska
Lassak, Jürgen
Martin, Nathaniel I.
Walvoort, Marthe T. C.
author_facet Yakovlieva, Liubov
Wood, Thomas M.
Kemmink, Johan
Kotsogianni, Ioli
Koller, Franziska
Lassak, Jürgen
Martin, Nathaniel I.
Walvoort, Marthe T. C.
author_sort Yakovlieva, Liubov
collection PubMed
description For canonical asparagine glycosylation, the primary amino acid sequence that directs glycosylation at specific asparagine residues is well-established. Here we reveal that a recently discovered bacterial enzyme EarP, that transfers rhamnose to a specific arginine residue in its acceptor protein EF-P, specifically recognizes a β-hairpin loop. Notably, while the in vitro rhamnosyltransferase activity of EarP is abolished when presented with linear substrate peptide sequences derived from EF-P, the enzyme readily glycosylates the same sequence in a cyclized β-hairpin mimic. Additional studies with other substrate-mimicking cyclic peptides revealed that EarP activity is sensitive to the method used to induce cyclization and in some cases is tolerant to amino acid sequence variation. Using detailed NMR approaches, we established that the active peptide substrates all share some degree of β-hairpin formation, and therefore conclude that the β-hairpin epitope is the major determinant of arginine-rhamnosylation by EarP. Our findings add a novel recognition motif to the existing knowledge on substrate specificity of protein glycosylation, and are expected to guide future identifications of rhamnosylation sites in other protein substrates.
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spelling pubmed-81792302021-06-22 A β-hairpin epitope as novel structural requirement for protein arginine rhamnosylation Yakovlieva, Liubov Wood, Thomas M. Kemmink, Johan Kotsogianni, Ioli Koller, Franziska Lassak, Jürgen Martin, Nathaniel I. Walvoort, Marthe T. C. Chem Sci Chemistry For canonical asparagine glycosylation, the primary amino acid sequence that directs glycosylation at specific asparagine residues is well-established. Here we reveal that a recently discovered bacterial enzyme EarP, that transfers rhamnose to a specific arginine residue in its acceptor protein EF-P, specifically recognizes a β-hairpin loop. Notably, while the in vitro rhamnosyltransferase activity of EarP is abolished when presented with linear substrate peptide sequences derived from EF-P, the enzyme readily glycosylates the same sequence in a cyclized β-hairpin mimic. Additional studies with other substrate-mimicking cyclic peptides revealed that EarP activity is sensitive to the method used to induce cyclization and in some cases is tolerant to amino acid sequence variation. Using detailed NMR approaches, we established that the active peptide substrates all share some degree of β-hairpin formation, and therefore conclude that the β-hairpin epitope is the major determinant of arginine-rhamnosylation by EarP. Our findings add a novel recognition motif to the existing knowledge on substrate specificity of protein glycosylation, and are expected to guide future identifications of rhamnosylation sites in other protein substrates. The Royal Society of Chemistry 2020-12-07 /pmc/articles/PMC8179230/ /pubmed/34163919 http://dx.doi.org/10.1039/d0sc05823h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Yakovlieva, Liubov
Wood, Thomas M.
Kemmink, Johan
Kotsogianni, Ioli
Koller, Franziska
Lassak, Jürgen
Martin, Nathaniel I.
Walvoort, Marthe T. C.
A β-hairpin epitope as novel structural requirement for protein arginine rhamnosylation
title A β-hairpin epitope as novel structural requirement for protein arginine rhamnosylation
title_full A β-hairpin epitope as novel structural requirement for protein arginine rhamnosylation
title_fullStr A β-hairpin epitope as novel structural requirement for protein arginine rhamnosylation
title_full_unstemmed A β-hairpin epitope as novel structural requirement for protein arginine rhamnosylation
title_short A β-hairpin epitope as novel structural requirement for protein arginine rhamnosylation
title_sort β-hairpin epitope as novel structural requirement for protein arginine rhamnosylation
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179230/
https://www.ncbi.nlm.nih.gov/pubmed/34163919
http://dx.doi.org/10.1039/d0sc05823h
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