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Angelic Acid Disassembles Fibrillar α-Synuclein Aggregates through β-Sheet Interface Disruption

  • Hyo Gi Jung
  • , Junho Bang
  • , Juhyun Kim
  • , Yeon Ho Kim
  • , Wonbin Moon
  • , Hyunji Kim
  • , Jisung Yoon
  • , Kyo Seon Hwang
  • , Jeong Hoon Lee
  • , Seung Jae Lee
  • , Jae Yong Park
  • , Dongtak Lee
  • , Dae Sung Yoon

Research output: Contribution to journalArticlepeer-review

Abstract

Pathological aggregation of α-synuclein is a hallmark of synucleinopathies such as Parkinson’s disease, where fibrillar α-synuclein aggregates drive neurodegeneration. Here, we aimed to identify small molecules capable of disassembling fibrillar α-synuclein aggregates by screening a natural product library using a plasmonic nanoparticle amyloid corona platform. Candidates were further ranked based on key physicochemical properties (molecular weight, solubility, and lipophilicity) associated with cell permeability and potential central nervous system accessibility. Through this analysis, angelic acid emerged as the top candidate. Physicochemical characterization, including circular dichroism, Fourier-transform infrared spectroscopy, transmission electron microscopy, and atomic force microscopy, demonstrated that angelic acid disrupts β-sheet-rich conformations and fragments α-synuclein fibrils. Molecular docking analysis suggested potential interactions of angelic acid with β-sheet interface regions across multiple α-synuclein fibril polymorphs. In a bimolecular fluorescence complementation cell model, angelic acid reduced intracellular α-synuclein accumulation by up to 91.4% at 100 μM. In addition, angelic acid alleviated α-synuclein fibril-induced cytotoxicity by 34.1%, demonstrating both reduced cellular α-synuclein levels and attenuation of α-synuclein fibril-induced cytotoxicity. Collectively, these findings suggest that angelic acid is a pathological α-synuclein-targeting lead compound for synucleinopathies, highlighting the need for further in vivo evaluation in synucleinopathy models.

Original languageEnglish
Pages (from-to)1704-1715
Number of pages12
JournalACS Chemical Neuroscience
Volume17
Issue number9
DOIs
Publication statusPublished - 6 May 2026

Bibliographical note

Publisher Copyright:
© 2026 American Chemical Society

Keywords

  • angelic acid
  • fibril disassembly
  • natural product
  • plasmonic nanoparticle amyloid corona (PNAC)
  • synucleinopathies
  • α-synuclein

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