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March 12, 2026Nature Communications3 citationsOpen Access

Multi-modal dissection of cell-type specific TDP-43 pathology in the motor cortex

WRWolfgang RufJKJulia K. KühlweinLMLaura Meier

Key Points

  • The study aims to identify affected cell types and their specific vulnerabilities to TDP-43 pathology in ALS.
  • Used flow-cytometry nuclear sorting and sequencing techniques.
  • Employed single-nucleus multi-omic ATAC-seq and RNA-seq.
  • Utilized spatial transcriptomics for comprehensive analysis.
  • Analyzed post-mortem motor cortex samples from ALS, ALS-FTD, and control groups.
  • Mainly excitatory cortical neurons show TDP-43 pathology.
  • Specific vulnerable neuron types were identified, including L2-L3 and L3-L5 populations.
  • Transcriptional changes, like cryptic exon inclusion, vary by cell type and affect distinct gene sets.

Abstract

Cytoplasmic TDP-43 pathology is a pathological sign of ALS/ALS-FTD and a converging disease event across different genotypes, phenotypes and CNS areas. To understand this process and target it therapeutically, we need to define which cell types are affected and which cell-type specific effects make them particularly vulnerable. We coupled flow-cytometry nuclear sorting and sequencing with single-nucleus multi-omic ATAC-seq and RNA-seq and spatial transcriptomics to define the transcriptional cell type of affected neurons in the post-mortem ALS/ALS-FTD motor cortex (30 ALS, 20 ALS-FTD & 32 control samples). Here, we show that mainly excitatory cortical neurons are affected by TDP-43 pathology and define the cell types that are affected the most: intratelencephalic L2-L3-LINC00507-FREM3, L3-L5-RORB-LNX2, L3-L5-RORB-ADGRL4 & L6-THEMIS-LINC00343 neurons and extratelencephalic L5-FEZF2-NTNG1 neurons. Transcriptional aberrations by TDP-43 pathology, like cryptic exon inclusion, are cell-type specific and affect distinct gene sets in each cell type, highlighting the need to address TDP-43 pathology in a cell-type specific manner.

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Cite This Study

Ruf et al. (2026) studied this question.

synapsesocial.com/papers/69b25b0996eeacc4fcec94b1https://doi.org/10.1038/s41467-026-69944-6
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