Glycomic Profiling Reveals Enhanced Sialylation and Plasma-Derived Fibrinogen Accumulation in the Parkinson's Disease Cerebellum

  • Byeon, Haeun
  • Jang, Leeseul
  • Kim, Jieun
  • Park, Chi Soo
  • Moon, Chulmin
  • ... Kim, Ha Hyung
  • 외 5명
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Parkinson's disease (PD) is characterized by the degeneration of dopaminergic neurons in the substantia nigra, a key component of the basal ganglia. The cerebellum, which supports motor learning and cognition and forms a functional network with the basal ganglia, has been associated with both motor and non-motor symptoms of PD. N-glycosylation has been linked to neurodegeneration and alterations in cerebellar neuroimmune and synaptic regulation; however, the structural characteristics of cerebellar N-glycans remain unclear. In this study, we employed a comprehensive liquid chromatography (LC)-quadrupole-Orbitrap-tandem mass spectrometry (MS/MS)-based glycoproteomic approach to characterize N-glycans and N-glycopeptides in postmortem cerebellar tissues from neurologically normal (NM) and PD brains. Forty-two N-glycans were structurally identical but quantitatively distinct, with PD exhibiting increased sialylation (A2G2S2, A2G2S1, A2G1S1) and decreased mannosylation (M5). Glycoproteomic analysis revealed 11 N-glycopeptides in PD, six of which were unique to PD. Three PD-specific N-glycopeptides (DLQSLEDILHQVEN78K, N78: N-glycosylation site) bearing increased sialylated N-glycans originated from the γ-chain of plasma fibrinogen. Consistently, fibrinogen was detected exclusively in PD in MS/MS-based proteomics analysis for protein identification. These findings provide the first structural evidence of enhanced sialylation and plasma-derived glycoprotein accumulation in the PD cerebellum, suggesting that aberrant N-glycosylation may contribute to cerebellar dysfunction and potential blood-brain barrier compromise. Our findings offer insights into the molecular feature underlying cerebellar pathology in PD. © 2026. The Author(s), under exclusive licence to Springer Science+Business Media, LLC, part of Springer Nature.

키워드

Cerebellar tissueFibrinogenGlycoproteomicsLiquid chromatography-quadrupole-Orbitrap-tandem mass spectrometryParkinson’s diseaseMASS-SPECTROMETRIC ANALYSISPROTEIN N-GLYCOSYLATIONBASAL GANGLIAALPHA-SYNUCLEINLIQUID-CHROMATOGRAPHYNEUROTROPHIC FACTORRECEPTOR SUBTYPESDOPAMINEIDENTIFICATIONPROCAINAMIDE
제목
Glycomic Profiling Reveals Enhanced Sialylation and Plasma-Derived Fibrinogen Accumulation in the Parkinson's Disease Cerebellum
저자
Byeon, HaeunJang, LeeseulKim, JieunPark, Chi SooMoon, ChulminKim, KyuranEom, DaeunKim, SiwonLee, SeojeongLee, JihyeonKim, Ha Hyung
DOI
10.1007/s12035-026-05743-w
발행일
2026-03
유형
Article
저널명
Molecular Neurobiology
63
1