Shotgun ion mobility mass spectrometry sequencing of heparan sulfate saccharides

Heparan sulfates (HS) contain functionally relevant structural motifs, but determining their monosaccharide sequence remains challenging. Here, the authors develop an ion mobility mass spectrometry-based method that allows unambiguous characterization of HS sequences and structure-activity relations...

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Autores principales: Rebecca L. Miller, Scott E. Guimond, Ralf Schwörer, Olga V. Zubkova, Peter C. Tyler, Yongmei Xu, Jian Liu, Pradeep Chopra, Geert-Jan Boons, Márkó Grabarics, Christian Manz, Johanna Hofmann, Niclas G. Karlsson, Jeremy E. Turnbull, Weston B. Struwe, Kevin Pagel
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/771c43443fb14659b5131577553e2f14
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spelling oai:doaj.org-article:771c43443fb14659b5131577553e2f142021-12-02T14:42:11ZShotgun ion mobility mass spectrometry sequencing of heparan sulfate saccharides10.1038/s41467-020-15284-y2041-1723https://doaj.org/article/771c43443fb14659b5131577553e2f142020-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-15284-yhttps://doaj.org/toc/2041-1723Heparan sulfates (HS) contain functionally relevant structural motifs, but determining their monosaccharide sequence remains challenging. Here, the authors develop an ion mobility mass spectrometry-based method that allows unambiguous characterization of HS sequences and structure-activity relationships.Rebecca L. MillerScott E. GuimondRalf SchwörerOlga V. ZubkovaPeter C. TylerYongmei XuJian LiuPradeep ChopraGeert-Jan BoonsMárkó GrabaricsChristian ManzJohanna HofmannNiclas G. KarlssonJeremy E. TurnbullWeston B. StruweKevin PagelNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-12 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Rebecca L. Miller
Scott E. Guimond
Ralf Schwörer
Olga V. Zubkova
Peter C. Tyler
Yongmei Xu
Jian Liu
Pradeep Chopra
Geert-Jan Boons
Márkó Grabarics
Christian Manz
Johanna Hofmann
Niclas G. Karlsson
Jeremy E. Turnbull
Weston B. Struwe
Kevin Pagel
Shotgun ion mobility mass spectrometry sequencing of heparan sulfate saccharides
description Heparan sulfates (HS) contain functionally relevant structural motifs, but determining their monosaccharide sequence remains challenging. Here, the authors develop an ion mobility mass spectrometry-based method that allows unambiguous characterization of HS sequences and structure-activity relationships.
format article
author Rebecca L. Miller
Scott E. Guimond
Ralf Schwörer
Olga V. Zubkova
Peter C. Tyler
Yongmei Xu
Jian Liu
Pradeep Chopra
Geert-Jan Boons
Márkó Grabarics
Christian Manz
Johanna Hofmann
Niclas G. Karlsson
Jeremy E. Turnbull
Weston B. Struwe
Kevin Pagel
author_facet Rebecca L. Miller
Scott E. Guimond
Ralf Schwörer
Olga V. Zubkova
Peter C. Tyler
Yongmei Xu
Jian Liu
Pradeep Chopra
Geert-Jan Boons
Márkó Grabarics
Christian Manz
Johanna Hofmann
Niclas G. Karlsson
Jeremy E. Turnbull
Weston B. Struwe
Kevin Pagel
author_sort Rebecca L. Miller
title Shotgun ion mobility mass spectrometry sequencing of heparan sulfate saccharides
title_short Shotgun ion mobility mass spectrometry sequencing of heparan sulfate saccharides
title_full Shotgun ion mobility mass spectrometry sequencing of heparan sulfate saccharides
title_fullStr Shotgun ion mobility mass spectrometry sequencing of heparan sulfate saccharides
title_full_unstemmed Shotgun ion mobility mass spectrometry sequencing of heparan sulfate saccharides
title_sort shotgun ion mobility mass spectrometry sequencing of heparan sulfate saccharides
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/771c43443fb14659b5131577553e2f14
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