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O-GlcNAc forces an α-synuclein amyloid strain with notably diminished seeding and pathology
Medicine and HealthNature Chemical Biology

O-GlcNAc forces an α-synuclein amyloid strain with notably diminished seeding and pathology

A. T. Balana, A. Mahul-mellier, et al.

Discover the groundbreaking research by Aaron T. Balana and colleagues that reveals how O-GlcNAc modification transforms α-synuclein monomers into amyloid fibrils with unique structures, impacting seeding activity in Parkinson's disease models. Their findings shed light on the role of post-translational modifications in determining pathogenicity.... show more
Abstract
Amyloid-forming proteins such α-synuclein and tau, which are implicated in Alzheimer's and Parkinson's disease, can form different fibril structures or strains with distinct toxic properties, seeding activities and pathology. Understanding the determinants contributing to the formation of different amyloid features could open new avenues for developing disease-specific diagnostics and therapies. Here we report that O-GlcNAc modification of α-synuclein monomers results in the formation of amyloid fibril with distinct core structure, as revealed by cryogenic electron microscopy, and diminished seeding activity in seeding-based neuronal and rodent models of Parkinson's disease. Although the mechanisms underpinning the seeding neutralization activity of the O-GlcNAc-modified fibrils remain unclear, our in vitro mechanistic studies indicate that heat shock proteins interactions with O-GlcNAc fibril inhibit their seeding activity, suggesting that the O-GlcNAc modification may alter the interactome of the α-synuclein fibrils in ways that lead to reduce seeding activity in vivo. Our results show that post-translational modifications, such as O-GlcNAc modification, of α-synuclein are key determinants of α-synuclein amyloid strains and pathogenicity.
Publisher
Nature Chemical Biology
Published On
May 01, 2024
Authors
Aaron T. Balana, Anne-Laure Mahul-Mellier, Binh A. Nguyen, Mian Horvath, Afraah Javed, Eldon R. Hard, Yllza Jasiqi, Preeti Singh, Shumaila Afrin, Rose Pedretti, Virender Singh, Virginia M.-Y. Lee, Kelvin C. Luk, Lorena Saelices, Hilal A. Lashuel, Matthew R. Pratt
Tags
O-GlcNAcα-synucleinamyloid fibrilsParkinson's diseasepost-translational modificationsseeding activityheat shock proteins
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