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C-Mannosylation Enhances the Structural Stability of Human RNase 2

C-Mannosylation is a relatively rare form of protein glycosylation involving the attachment of an α-mannopyranosyl residue to C-2 of the indole moiety of the amino acid tryptophan. This type of linkage was initially discovered in RNase 2 from human urine but later confirmed to be present in many oth...

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Autores principales: Frank, Martin, Beccati, Daniela, Leeflang, Bas R., Vliegenthart, Johannes F.G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7399192/
https://www.ncbi.nlm.nih.gov/pubmed/32739833
http://dx.doi.org/10.1016/j.isci.2020.101371
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author Frank, Martin
Beccati, Daniela
Leeflang, Bas R.
Vliegenthart, Johannes F.G.
author_facet Frank, Martin
Beccati, Daniela
Leeflang, Bas R.
Vliegenthart, Johannes F.G.
author_sort Frank, Martin
collection PubMed
description C-Mannosylation is a relatively rare form of protein glycosylation involving the attachment of an α-mannopyranosyl residue to C-2 of the indole moiety of the amino acid tryptophan. This type of linkage was initially discovered in RNase 2 from human urine but later confirmed to be present in many other important proteins. Based on NMR experiments and extensive molecular dynamics simulations on the hundred microsecond timescale we demonstrate that, for isolated glycopeptides and denatured RNase 2, the C-linked mannopyranosyl residue exists as an ensemble of conformations, among which (1)C(4) is the most abundant. However, for native RNase 2, molecular dynamics and NMR studies revealed that the mannopyranosyl residue favors a specific conformation, which optimally stabilizes the protein fold through a network of hydrogen bonds and which leads to a significant reduction of the protein dynamics on the microsecond timescale. Our findings contribute to the understanding of the biological role of C-mannosylation.
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spelling pubmed-73991922020-08-06 C-Mannosylation Enhances the Structural Stability of Human RNase 2 Frank, Martin Beccati, Daniela Leeflang, Bas R. Vliegenthart, Johannes F.G. iScience Article C-Mannosylation is a relatively rare form of protein glycosylation involving the attachment of an α-mannopyranosyl residue to C-2 of the indole moiety of the amino acid tryptophan. This type of linkage was initially discovered in RNase 2 from human urine but later confirmed to be present in many other important proteins. Based on NMR experiments and extensive molecular dynamics simulations on the hundred microsecond timescale we demonstrate that, for isolated glycopeptides and denatured RNase 2, the C-linked mannopyranosyl residue exists as an ensemble of conformations, among which (1)C(4) is the most abundant. However, for native RNase 2, molecular dynamics and NMR studies revealed that the mannopyranosyl residue favors a specific conformation, which optimally stabilizes the protein fold through a network of hydrogen bonds and which leads to a significant reduction of the protein dynamics on the microsecond timescale. Our findings contribute to the understanding of the biological role of C-mannosylation. Elsevier 2020-07-16 /pmc/articles/PMC7399192/ /pubmed/32739833 http://dx.doi.org/10.1016/j.isci.2020.101371 Text en © 2020 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Frank, Martin
Beccati, Daniela
Leeflang, Bas R.
Vliegenthart, Johannes F.G.
C-Mannosylation Enhances the Structural Stability of Human RNase 2
title C-Mannosylation Enhances the Structural Stability of Human RNase 2
title_full C-Mannosylation Enhances the Structural Stability of Human RNase 2
title_fullStr C-Mannosylation Enhances the Structural Stability of Human RNase 2
title_full_unstemmed C-Mannosylation Enhances the Structural Stability of Human RNase 2
title_short C-Mannosylation Enhances the Structural Stability of Human RNase 2
title_sort c-mannosylation enhances the structural stability of human rnase 2
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7399192/
https://www.ncbi.nlm.nih.gov/pubmed/32739833
http://dx.doi.org/10.1016/j.isci.2020.101371
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