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March 29, 2026Science Advances1 citationsOpen Access

Clinically relevant stereochemistry reprograms amyloid proteome for aggregation cross-talk–conferred neuroprotection

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JZJiaxin ZhouJLJuan LiuXLXilin Liu

Key Points

  • This research aims to understand how the stereochemical diversity of Aβ42 affects its aggregation and neurotoxicity in Alzheimer's disease.
  • Analyzed stereoproteome data from Alzheimer’s disease patient brain tissues.
  • Engineered a panel of stereoisomers to represent AD marker Aβ42.
  • Investigated the effects of L-Aβ42 and specific D-isomers on fibril formation.
  • Coexistence of L-Aβ42 with specific D-isomers suppressed toxic fibril formation.
  • This antagonistic effect provided significant neuroprotection.
  • Findings suggest a potential protective mechanism inherent to Aβ's stereochemical composition.

Abstract

The stereochemical diversity of Aβ42 in the brains of patients with Alzheimer’s disease (AD) is a clinically recognized but poorly understood phenomenon. A critical gap in our knowledge is how the complex mixture of these stereoisomers collectively influences the aggregation pathway and neurotoxicity of Aβ42 at the molecular level. Drawing from stereoproteome data from AD patient brain tissues and previous studies, we engineered a panel of stereoisomers to more simply simulate the stereochemical diversity of the AD marker Aβ42. We found that the coexistence of L-Aβ42 with specific D-isomers initiates a potent antagonistic effect, suppressing the formation of toxic fibrils. This stereochemically driven antagonism conferred notable neuroprotection, suggesting an endogenous protective mechanism. This proof-of-concept work elucidates at the molecular level that by regulating the stereochemical composition of Aβ, its inherent cellular protective antagonistic effect can be activated, providing unprecedented molecular basis for understanding the disease mechanism and subsequent possible clinical research.

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Cite This Study

Zhou et al. (2026) studied this question.

synapsesocial.com/papers/69c8c28cde0f0f753b39ce4ahttps://doi.org/10.1126/sciadv.aeb2729
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Mathematical Modeling of Aβ-42 Dimerization Dynamics: Integrating Physics-Based Simulations, Graph-Based Variational Autoencoder-Driven Neural Relational Inference, and Chaos Theory2025
  2. 2Structural Analysis of the Asymmetric Interaction Between Amyloid β42 and α-Synuclein: Amyloid β42 Oligomers Promote α-Synuclein Aggregation While α-Synuclein Inhibits Amyloid β42 Aggregation2026 · 2 citations
  3. 3Aggregation shifts amyloid-β peptides from synaptogenic to synaptotoxic2025
  4. 4Abstract 2390 Peptide-based Inhibitors of Amyloid Beta Oligomerization and Toxicity2024
  5. 5THE COMPREHENSIVE REVIEW OF AMLYIOD HYPOTHESIS IN ALZHEIMER'S (AD)2026