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Changes in tissue protein N-glycosylation and associated molecular signature occur in the human Parkinsonian brain in a region-specific manner

  • Ana Lúcia Rebelo
  • , Richard R. Drake
  • , Martina Marchetti-Deschmann
  • , Radka Saldova
  • , Abhay Pandit
    • University of Galway
    • Medical University of South Carolina
    • TU Wien
    • University College Dublin
    • University College Dublin

    Research output: Contribution to a Journal (Peer & Non Peer)Articlepeer-review

    15 Citations (Scopus)

    Abstract

    Parkinson's disease (PD) associated state of neuroinflammation due to the aggregation of aberrant proteins is widely reported. One type of post-translational modification involved in protein stability is glycosylation. Here, we aimed to characterize the human Parkinsonian nigro-striatal N-glycome, and related transcriptome/proteome, and its correlation with endoplasmic reticulum (ER) stress and unfolded protein response (UPR), providing a comprehensive characterization of the PD molecular signature. Significant changes were seen upon a PD: a 3% increase in sialylation and 5% increase in fucosylation in both regions, and a 2% increase in oligomannosylated N-glycans in the substantia nigra. In the latter, a decrease in the mRNA expression of sialidases and an upregulation in the UPR pathway were also seen. To show the correlation between these, we also describe a small in vitro study where changes in specific glycosylation trait enzymes (inhibition of sialyltransferases) led to impairments in cell mitochondrial activity, changes in glyco-profile, and upregulation in UPR pathways. This complete characterization of the human nigro-striatal N-glycome provides an insight into the glycomic profile of PD through a transversal approach while combining the other PD “omics” pieces, which can potentially assist in the development of glyco-focused therapeutics.

    Original languageEnglish
    Article numberpgad439
    JournalPNAS Nexus
    Volume3
    Issue number1
    DOIs
    Publication statusPublished - 1 Jan 2024

    Keywords

    • glycomics
    • human brain
    • N-glycosylation
    • Parkinson's disease
    • protein glycosylation

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