Glycosaminoglycans: What remains to be deciphered?
Glycosaminoglycans: What remains to be deciphered?
Glycosaminoglycans (GAGs) are complex polysaccharides exhibiting a vast structural diversity and fulfilling various functions mediated by thousands of interactions in the extracellular matrix, at the cell surface, and within the cells where they have been detected in the nucleus. It is known that the chemical groups attached to GAGs and GAG conformations comprise “glycocodes” that are not yet fully deciphered. The molecular context also matters for GAG structures and functions, and the influence of the structure and functions of the proteoglycan core proteins on sulfated GAGs and vice versa warrants further investigation. The lack of dedicated bioinformatic tools for mining GAG data sets contributes to a partial characterization of the structural and functional landscape and interactions of GAGs. These pending issues will benefit from the development of new approaches reviewed here, namely (i) the synthesis of GAG oligosaccharides to build large and diverse GAG libraries, (ii) GAG analysis and sequencing by mass spectrometry (e.g., ion mobility-mass spectrometry), gas-phase infrared spectroscopy, recognition tunnelling nanopores, and molecular modeling to identify bioactive GAG sequences, biophysical methods to investigate binding interfaces, and to expand our knowledge and understanding of glycocodes governing GAG molecular recognition, and (iii) artificial intelligence for in-depth investigation of GAGomic data sets and their integration with proteomics.
chondroitin sulfate, dermatan sulfate, glycosaminoglycans, heparan sulfate, heparin, hyaluronan, keratan sulfate heparosan
628-656
Perez, Serge
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Makshakova, Olga
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Angulo, Jesus
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Bedini, Emiliano
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Bisio, Antonella
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de Paz, Jose Luis
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Fadda, Elisa
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Guerrini, Marco
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Hricovini, Michal
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Hricovini, Milos
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Lisacek, Frederique
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Nieto, Pedro M.
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Pagel, Kevin
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Paiardi, Giulia
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Richter, Ralf
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Samsonov, Sergey A.
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Vivès, Romain R.
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Nikitovic, Dragana
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Ricard Blum, Sylvie
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27 March 2023
Perez, Serge
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Makshakova, Olga
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Angulo, Jesus
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Bedini, Emiliano
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Bisio, Antonella
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de Paz, Jose Luis
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Fadda, Elisa
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Guerrini, Marco
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Hricovini, Michal
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Hricovini, Milos
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Lisacek, Frederique
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Nieto, Pedro M.
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Pagel, Kevin
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Paiardi, Giulia
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Richter, Ralf
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Samsonov, Sergey A.
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Vivès, Romain R.
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Nikitovic, Dragana
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Ricard Blum, Sylvie
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Perez, Serge, Makshakova, Olga, Angulo, Jesus, Bedini, Emiliano, Bisio, Antonella, de Paz, Jose Luis, Fadda, Elisa, Guerrini, Marco, Hricovini, Michal, Hricovini, Milos, Lisacek, Frederique, Nieto, Pedro M., Pagel, Kevin, Paiardi, Giulia, Richter, Ralf, Samsonov, Sergey A., Vivès, Romain R., Nikitovic, Dragana and Ricard Blum, Sylvie
(2023)
Glycosaminoglycans: What remains to be deciphered?
JACS AU, 3 (3), .
(doi:10.1021/jacsau.2c00569).
Abstract
Glycosaminoglycans (GAGs) are complex polysaccharides exhibiting a vast structural diversity and fulfilling various functions mediated by thousands of interactions in the extracellular matrix, at the cell surface, and within the cells where they have been detected in the nucleus. It is known that the chemical groups attached to GAGs and GAG conformations comprise “glycocodes” that are not yet fully deciphered. The molecular context also matters for GAG structures and functions, and the influence of the structure and functions of the proteoglycan core proteins on sulfated GAGs and vice versa warrants further investigation. The lack of dedicated bioinformatic tools for mining GAG data sets contributes to a partial characterization of the structural and functional landscape and interactions of GAGs. These pending issues will benefit from the development of new approaches reviewed here, namely (i) the synthesis of GAG oligosaccharides to build large and diverse GAG libraries, (ii) GAG analysis and sequencing by mass spectrometry (e.g., ion mobility-mass spectrometry), gas-phase infrared spectroscopy, recognition tunnelling nanopores, and molecular modeling to identify bioactive GAG sequences, biophysical methods to investigate binding interfaces, and to expand our knowledge and understanding of glycocodes governing GAG molecular recognition, and (iii) artificial intelligence for in-depth investigation of GAGomic data sets and their integration with proteomics.
Text
perez-et-al-2023-glycosaminoglycans-what-remains-to-be-deciphered
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Accepted/In Press date: 7 December 2022
Published date: 27 March 2023
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Publisher Copyright:
© 2023 The Authors. Published by American Chemical Society
Keywords:
chondroitin sulfate, dermatan sulfate, glycosaminoglycans, heparan sulfate, heparin, hyaluronan, keratan sulfate heparosan
Identifiers
Local EPrints ID: 500273
URI: http://eprints.soton.ac.uk/id/eprint/500273
ISSN: 2691-3704
PURE UUID: de9551b2-e079-4fe7-8858-5a16a58e6d89
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Date deposited: 23 Apr 2025 16:49
Last modified: 22 Aug 2025 02:42
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Contributors
Author:
Serge Perez
Author:
Olga Makshakova
Author:
Jesus Angulo
Author:
Emiliano Bedini
Author:
Antonella Bisio
Author:
Jose Luis de Paz
Author:
Elisa Fadda
Author:
Marco Guerrini
Author:
Michal Hricovini
Author:
Milos Hricovini
Author:
Frederique Lisacek
Author:
Pedro M. Nieto
Author:
Kevin Pagel
Author:
Giulia Paiardi
Author:
Ralf Richter
Author:
Sergey A. Samsonov
Author:
Romain R. Vivès
Author:
Dragana Nikitovic
Author:
Sylvie Ricard Blum
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