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dc.contributor.authorJo, Sunhwan
dc.contributor.authorLee, Hui Sun
dc.contributor.authorSkolnick, Jeffrey
dc.contributor.authorIm, Wonpil
dc.date.accessioned2013-07-29T21:34:20Z
dc.date.available2013-07-29T21:34:20Z
dc.date.issued2013-03-14
dc.identifier.citationIm, Wonpil; et al. (2013) Restricted N-glycan Conformational Space in the PDB and Its Implication in Glycan Structure Modeling. Plos Computational Biology, 9.3: 1-10. http://dx.doi.org/10.1371/journal.pcbi.1002946
dc.identifier.urihttp://hdl.handle.net/1808/11539
dc.descriptionA grant from the One-University Open Access Fund at the University of Kansas was used to defray the author’s publication fees in this Open Access journal. The Open Access Fund, administered by librarians from the KU, KU Law, and KUMC libraries, is made possible by contributions from the offices of KU Provost, KU Vice Chancellor for Research & Graduate Studies, and KUMC Vice Chancellor for Research. For more information about the Open Access Fund, please see http://library.kumc.edu/authors-fund.xml.
dc.description.abstractUnderstanding glycan structure and dynamics is central to understanding protein-carbohydrate recognition and its role in protein-protein interactions. Given the difficulties in obtaining the glycan's crystal structure in glycoconjugates due to its flexibility and heterogeneity, computational modeling could play an important role in providing glycosylated protein structure models. To address if glycan structures available in the PDB can be used as templates or fragments for glycan modeling, we present a survey of the N-glycan structures of 35 different sequences in the PDB. Our statistical analysis shows that the N-glycan structures found on homologous glycoproteins are significantly conserved compared to the random background, suggesting that N-glycan chains can be confidently modeled with template glycan structures whose parent glycoproteins share sequence similarity. On the other hand, N-glycan structures found on non-homologous glycoproteins do not show significant global structural similarity. Nonetheless, the internal substructures of these N-glycans, particularly, the substructures that are closer to the protein, show significantly similar structures, suggesting that such substructures can be used as fragments in glycan modeling. Increased interactions with protein might be responsible for the restricted conformational space of N-glycan chains. Our results suggest that structure prediction/modeling of N-glycans of glycoconjugates using structure database could be effective and different modeling approaches would be needed depending on the availability of template structures.
dc.publisherPublic Library of Science
dc.rightsCopyright ©2013 Jo et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
dc.titleRestricted N-glycan Conformational Space in the PDB and Its Implication in Glycan Structure Modeling
dc.typeArticle
kusw.kuauthorIm, Wonpil
kusw.kudepartmentDepartment of Molecular Biosciences
kusw.oastatusfullparticipation
dc.identifier.doi10.1371/journal.pcbi.1002946
dc.identifier.orcidhttps://orcid.org/0000-0002-4104-6473
kusw.oaversionScholarly/refereed, publisher version
kusw.oapolicyThis item meets KU Open Access policy criteria.
dc.rights.accessrightsopenAccess


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