Mapping protein variants associated with Alzheimer’s disease by mass-spectrometry based de novo sequencing assisted strategy

peer-reviewed · Journal of Alzheimer’s Disease · 2026

peer-reviewed · Journal of Alzheimer’s Disease · 2026. Daria D. Emekeeva et al. BackgroundAlzheimer’s disease (AD) is an incurable neurodegenerative disease with poorly understood…
Date 2026-03-01
Type peer-reviewed
Venue Journal of Alzheimer’s Disease
Publisher SAGE Publications
Contribution downstream-application
DOI 10.1177/13872877251414414
Citations (OpenAlex) 0

Abstract

BackgroundAlzheimer’s disease (AD) is an incurable neurodegenerative disease with poorly understood pathogenesis. Understanding changes in protein sequences due to amino acid substitutions (AASs) may be important for uncovering molecular mechanisms of this disease.ObjectiveThe study aimed at developing a bioinformatic pipeline for searching AASs in proteomic data and revealing the AD-specific ones, highlighting potential biomarkers and/or therapeutic targets.MethodsThe developed pipeline integrates peptide de novo sequencing approach, database searches, and retention time prediction. It was applied to a large collection of AD proteomic data from global consortium studies obtained for post-mortem brain tissue samples.ResultsProteins with identified AASs were clustered by functionality. Proteins heavily enriched with AASs were the ones associated with ion transport activity, ATP binding, and G-protein signaling, aligning with known AD mechanisms. Further we classified the identified AASs by their origin (tRNA misacylation, post-translational modifications, single nucleotide polymorphisms) and by Braak stage and sex. Pathogenicity analysis, cross-referenced with clinical information, identified pathogenic mutations in HBD (W38S), GFAP (N77D), and NEFL (N98D).ConclusionsThe developed pipeline successfully maps disease-relevant protein variants by uncovering novel molecular features of a disease with biomarker and therapeutic potential. AASs identified in the work for AD samples reveal specific pathogenic mutations and implicate important biological processes.

Authors

  1. Daria D. Emekeeva · N.N. Semenov Federal Research Center for Chemical Physics
  2. Jinfeng Chen · The First Affiliated Hospital of Zhengzhou University
  3. Yang Yang · The First Affiliated Hospital of Zhengzhou University
  4. Jinghua Yang · The First Affiliated Hospital of Zhengzhou University
  5. Mikhail V. Gorshkov · N.N. Semenov Federal Research Center for Chemical Physics
  6. Irina A. Tarasova · N.N. Semenov Federal Research Center for Chemical Physics

Methods and tools

  • Alzheimer amino acid substitution pipeline: Bioinformatic pipeline that searches proteomic data for amino acid substitutions using a de novo sequencing assisted strategy, and identifies the substitutions specific to Alzheimer’s disease as candidate biomarkers or therapeutic targets.

Cites (4)

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