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1.
Expert Rev Proteomics ; 15(4): 341-352, 2018 04.
Article in English | MEDLINE | ID: mdl-29521143

ABSTRACT

INTRODUCTION: The changes in glycan structures have been attributed to disease states for several decades. The surface glycosylation pattern is a signature of physiological state of a cell. In this review we provide a link between observed substructural glycan changes and a range of diseases. Areas covered: We highlight biologically relevant glycan substructure expression in cancer, inflammation, neuronal diseases and diabetes. Furthermore, the alterations in antibody glycosylation in a disease context are described. Expert commentary: Advances in technologies, as described in Part 1 of this review have now enabled the characterization of specific glycan structural markers of a range of disease states. The requirement of including glycomics in cross-disciplinary omics studies, such as genomics, proteomics, epigenomics, transcriptomics and metabolomics towards a systems glycobiology approach to understanding disease mechanisms and management are highlighted.


Subject(s)
Glycomics/methods , Polysaccharides/metabolism , Glycosylation , Humans , Mass Spectrometry/methods , Proteomics/methods
2.
Expert Rev Proteomics ; 15(2): 165-182, 2018 02.
Article in English | MEDLINE | ID: mdl-29285957

ABSTRACT

INTRODUCTION: Protein glycosylation is recognized as an important post-translational modification, with specific substructures having significant effects on protein folding, conformation, distribution, stability and activity. However, due to the structural complexity of glycans, elucidating glycan structure-function relationships is demanding. The fine detail of glycan structures attached to proteins (including sequence, branching, linkage and anomericity) is still best analysed after the glycans are released from the purified or mixture of glycoproteins (glycomics). The technologies currently available for glycomics are becoming streamlined and standardized and many features of protein glycosylation can now be determined using instruments available in most protein analytical laboratories. Areas covered: This review focuses on the current glycomics technologies being commonly used for the analysis of the microheterogeneity of monosaccharide composition, sequence, branching and linkage of released N- and O-linked glycans that enable the determination of precise glycan structural determinants presented on secreted proteins and on the surface of all cells. Expert commentary: Several emerging advances in these technologies enabling glycomics analysis are discussed. The technological and bioinformatics requirements to be able to accurately assign these precise glycan features at biological levels in a disease context are assessed.


Subject(s)
Glycomics/methods , Molecular Diagnostic Techniques/methods , Polysaccharides/metabolism , Protein Processing, Post-Translational , Proteome/metabolism , Biomarkers/chemistry , Biomarkers/metabolism , Glycosylation , Humans , Polysaccharides/chemistry , Proteome/chemistry
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