A microprotein atlas of the human frontal cortex in Alzheimer’s disease

Abstract Understanding the molecular basis of neurodegeneration requires a comprehensive map of the genome’s protein-coding output. Although thousands of small open reading frames (ORFs) are translated in the human brain, proteomic evidence for their encoded microproteins (MPs) (≤150 amino acids (aa)) remains limited. Here, we present a brain MP atlas that integrates transcriptomics, mass spectrometry and deep-learning-predicted spectra across more than 600 postmortem frontal cortex samples with and without Alzheimer’s disease (AD). We identified 1,067 MPs absent from reviewed UniProtKB entries with high-confidence spectral support. A subset is differentially expressed in AD independently of the annotated main ORF at the same locus. A small ORF expressed by MKKS encodes a 63-amino-acid MP that is the locus’s predominant translation product and is downregulated in AD; its loss impairs microglial mitochondrial respiration, implicating it in microglial bioenergetics. This atlas expands the annotated brain proteome and provides a resource for studying MPs in aging and neurodegeneration.

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Publication Details

Journal
Nature Aging
Published
2026-09-14
DOI
https://doi.org/10.1038/s43587-026-01207-x
Primary Topic
Alzheimer's disease research and treatments
Type
article
Field-Weighted Citation Impact
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article

A microprotein atlas of the human frontal cortex in Alzheimer’s disease

Victor J. Pai, Servando Giráldez, Eduardo Vieira de Souza, Clodagh C. O’Shea et al.
Nature Aging
Alzheimer's disease research and treatments
article

A microprotein atlas of the human frontal cortex in Alzheimer’s disease

Victor J. Pai, Servando Giráldez, Eduardo Vieira de Souza, Clodagh C. O’Shea, Brendan Miller, Alan Saghatelian, Andréa L. Rocha, Joan Vaughan, Andrea Rocha, Calvin Lau, David A. Bennett
article en

Abstract

Abstract Understanding the molecular basis of neurodegeneration requires a comprehensive map of the genome’s protein-coding output. Although thousands of small open reading frames (ORFs) are translated in the human brain, proteomic evidence for their encoded microproteins (MPs) (≤150 amino acids (aa)) remains limited. Here, we present a brain MP atlas that integrates transcriptomics, mass spectrometry and deep-learning-predicted spectra across more than 600 postmortem frontal cortex samples with and without Alzheimer’s disease (AD). We identified 1,067 MPs absent from reviewed UniProtKB entries with high-confidence spectral support. A subset is differentially expressed in AD independently of the annotated main ORF at the same locus. A small ORF expressed by MKKS encodes a 63-amino-acid MP that is the locus’s predominant translation product and is downregulated in AD; its loss impairs microglial mitochondrial respiration, implicating it in microglial bioenergetics. This atlas expands the annotated brain proteome and provides a resource for studying MPs in aging and neurodegeneration.

Nature Aging
Scripps Research Institute (US), Rush University Medical Center (US), Salk Institute for Biological Studies (US)
Quality Education
Openalex Percentile: Top 11%
Alzheimer's disease research and treatments
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