Imaging nanoscopic co-assemblies of α-synuclein and Tau in human samples

Abstract α-synuclein (αS), amyloid-β (Aβ), and Tau aggregates are hallmarks of many neurodegenerative diseases, yet the prevalence and nature of their nanoscopic co-assemblies remain poorly understood. Here, we adapt a single-molecule pull-down (SiMPull) assay to profile αS, Aβ, and Tau co-assemblies across post-mortem brain tissue homogenates, soluble brain fractions, human serum, cerebrospinal fluid, and saliva. We show that αS–Tau co-assemblies are abundant across all sample matrices, accounting for ~10–70% of total αS aggregates in both Parkinson’s disease (PD) and control samples. Notably, αS–Tau co-assemblies in soluble brain fractions from controls exhibit higher Proteinase K (PK) resistance than those from PD cases. Biophysically, Tau accelerates αS aggregation in simple in vitro systems, but this effect is suppressed in complex environments. Together, this work establishes a framework for probing co-assemblies, revealing that αS–Tau species possess heterogeneous biophysical features and are unlikely to act as a single, uniformly toxic species in PD pathology.

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Publication Details

Journal
Nature Communications
Published
2026-09-18
DOI
https://doi.org/10.1038/s41467-026-77728-1
Primary Topic
Parkinson's Disease Mechanisms and Treatments
Type
article
Field-Weighted Citation Impact
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article

Imaging nanoscopic co-assemblies of α-synuclein and Tau in human samples

Shekhar Kedia, Caroline H. Williams‐Gray, Yu P. Zhang, Annelies Quaegebeur et al.
Nature Communications
Parkinson's Disease Mechanisms and Treatments
article

Imaging nanoscopic co-assemblies of α-synuclein and Tau in human samples

Shekhar Kedia, Caroline H. Williams‐Gray, Yu P. Zhang, Annelies Quaegebeur, David Klenerman, Tim Bartels, Evgeniia Lobanova, Florence Layburn, Amber Wallis, Prasanna Suresh, Clara Obensa Bertroli, Cherida Zhang, Woo Suk Yang, Martin Furlepa, Melanie Burke, Yuhao Cui
article en

Abstract

Abstract α-synuclein (αS), amyloid-β (Aβ), and Tau aggregates are hallmarks of many neurodegenerative diseases, yet the prevalence and nature of their nanoscopic co-assemblies remain poorly understood. Here, we adapt a single-molecule pull-down (SiMPull) assay to profile αS, Aβ, and Tau co-assemblies across post-mortem brain tissue homogenates, soluble brain fractions, human serum, cerebrospinal fluid, and saliva. We show that αS–Tau co-assemblies are abundant across all sample matrices, accounting for ~10–70% of total αS aggregates in both Parkinson’s disease (PD) and control samples. Notably, αS–Tau co-assemblies in soluble brain fractions from controls exhibit higher Proteinase K (PK) resistance than those from PD cases. Biophysically, Tau accelerates αS aggregation in simple in vitro systems, but this effect is suppressed in complex environments. Together, this work establishes a framework for probing co-assemblies, revealing that αS–Tau species possess heterogeneous biophysical features and are unlikely to act as a single, uniformly toxic species in PD pathology.

Nature Communications
St Thomas' Hospital (GB), University of Cambridge (GB), Manchester Academic Health Science Centre (GB), Salford Royal NHS Foundation Trust (GB), UK Dementia Research Institute (GB), University College London (GB)
Royal Society
Life in Land
Openalex Percentile: Top 11%
Parkinson's Disease Mechanisms and Treatments
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