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  • Translating N-Glycan Analytical Applications into Clinical Strategies for Ovarian Cancer

    Author(s)
    Briggs, Matthew T
    Condina, Mark R
    Klingler-Hoffmann, Manuela
    Arentz, Georgia
    Everest-Dass, Arun V
    Kaur, Gurjeet
    Oehler, Martin K
    Packer, Nicolle H
    Hoffmann, Peter
    Griffith University Author(s)
    Everest-Dass, Arun
    Packer, Nicki
    Year published
    2019
    Metadata
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    Abstract
    Protein glycosylation, particularly N‐linked glycosylation, is a complex posttranslational modification (PTM), which plays an important role in protein folding and conformation, regulating protein stability and activity, cell–cell interaction, and cell signaling pathways. This review focuses on analytical techniques, primarily MS‐based techniques, to qualitatively and quantitatively assess N‐glycosylation while successfully characterizing compositional, structural, and linkage features with high specificity and sensitivity. The analytical techniques explored in this review include LC–ESI–MS/MS and MALDI time‐of‐flight MS ...
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    Protein glycosylation, particularly N‐linked glycosylation, is a complex posttranslational modification (PTM), which plays an important role in protein folding and conformation, regulating protein stability and activity, cell–cell interaction, and cell signaling pathways. This review focuses on analytical techniques, primarily MS‐based techniques, to qualitatively and quantitatively assess N‐glycosylation while successfully characterizing compositional, structural, and linkage features with high specificity and sensitivity. The analytical techniques explored in this review include LC–ESI–MS/MS and MALDI time‐of‐flight MS (MALDI‐TOF‐MS), which have been used to analyze clinical samples, such as serum, plasma, ascites, and tissue. Targeting the aberrant N‐glycosylation patterns observed in MALDI–MS imaging (MSI) offers a platform to visualize N‐glycans in tissue‐specific regions. The studies on the intra‐patient (i.e., a comparison of tissue‐specific regions from the same patient) and inter‐patient (i.e., a comparison of tissue‐specific regions between different patients) variation of early‐ and late‐stage ovarian cancer (OC) patients identify specific N‐glycan differences that improve understanding of the tumor microenvironment and potentially improve therapeutic strategies for the clinic.
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    Journal Title
    PROTEOMICS CLINICAL APPLICATIONS
    Volume
    13
    Issue
    3
    DOI
    https://doi.org/10.1002/prca.201800099
    Subject
    Medical biochemistry and metabolomics
    Publication URI
    http://hdl.handle.net/10072/386244
    Collection
    • Journal articles

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