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Published on: October 17, 2015
Mucin-Type O-Glycosylation Proximal to β-Secretase Cleavage Site Affects APP Processing and Aggregation Fate
YashoNandini Singh1, Deepika Regmi1, David Ormaza1
1Department of Chemistry and Biochemistry, Charles E. Schmidt College of Science, Florida Atlantic University, Boca Raton, FL, United States.
Abstract:
The amyloid-β precursor protein (APP) undergoes proteolysis by β- and γ-secretases to form amyloid-β peptides (Aβ), which is a hallmark of Alzheimer's disease (AD). Recent findings suggest a possible role of O-glycosylation on APP's proteolytic processing and subsequent fate for AD-related pathology. We have previously reported that Tyr681-O-glycosylation and the Swedish mutation accelerate cleavage of APP model glycopeptides by β-secretase (amyloidogenic pathway) more than α-secretase (non-amyloidogenic pathway). Therefore, to further our studies, we have synthesized additional native and Swedish-mutated (glyco)peptides with O-GalNAc moiety on Thr663 and/or Ser667 to explore the role of glycosylation on conformation, secretase activity, and aggregation kinetics of Aβ40. Our results show that conformation is strongly dependent on external conditions such as buffer ions and solvent polarity as well as internal modifications of (glyco)peptides such as length, O-glycosylation, and Swedish mutation. Furthermore, the level of β-secretase activity significantly increases for the glycopeptides containing the Swedish mutation compared to their nonglycosylated and native counterparts. Lastly, the glycopeptides impact the kinetics of Aβ40 aggregation by significantly increasing the lag phase and delaying aggregation onset, however, this effect is less pronounced for its Swedish-mutated counterparts. In conclusion, our results confirm that the Swedish mutation and/or O-glycosylation can render APP model glycopeptides more susceptible to cleavage by β-secretase. In addition, this study sheds new light on the possible role of glycosylation and/or glycan density on the rate of Aβ40 aggregation.
Insights
O-glycosylation and the Swedish mutation on amyloid-β precursor protein (APP) increase its susceptibility to beta-secretase cleavage, impacting amyloid-beta aggregation kinetics in Alzheimer's disease (AD) research.
Area of Science:
- Biochemistry
- Neuroscience
- Glycobiology
Background:
- Amyloid-β precursor protein (APP) processing by secretases generates amyloid-β (Aβ) peptides, central to Alzheimer's disease (AD) pathology.
- O-glycosylation of APP is increasingly recognized for its potential role in modulating APP processing and AD-related mechanisms.
- Previous work indicated Tyr681 O-glycosylation and the Swedish mutation accelerate APP cleavage via the amyloidogenic pathway.
Purpose of the Study:
- To investigate the impact of O-glycosylation at Thr663 and/or Ser667 on APP conformation, secretase activity, and Aβ40 aggregation kinetics.
- To compare the effects of native and Swedish-mutated APP glycopeptides.
- To elucidate the role of O-glycosylation and glycan density in APP processing and Aβ aggregation.
Main Methods:
- Synthesis of native and Swedish-mutated APP model glycopeptides with O-GalNAc modifications.
- Analysis of glycopeptide conformation under varying buffer and solvent conditions.
- Assays to measure β-secretase activity and Aβ40 aggregation kinetics.
Main Results:
- Glycopeptide conformation is influenced by external conditions and internal modifications, including O-glycosylation and the Swedish mutation.
- β-secretase activity is significantly elevated in Swedish-mutated glycopeptides compared to non-glycosylated and native counterparts.
- Glycopeptides delay Aβ40 aggregation onset by increasing the lag phase, with a less pronounced effect for Swedish-mutated variants.
Conclusions:
- O-glycosylation and the Swedish mutation enhance APP susceptibility to β-secretase cleavage.
- These modifications influence the aggregation kinetics of Aβ40.
- Findings highlight the potential role of glycosylation and glycan density in modulating APP processing and AD pathogenesis.
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