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January 14, 2026eLife0 citationsOpen Access

Dilated cardiomyopathy-associated RNA-binding motif protein 20 regulates long pre-mRNAs in neurons

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GBGiulia Di BartolomeiRORaul OrtizBMB.F. Miller

Key Points

  • To investigate the role of RBM20 in RNA regulation within the neuronal context and its implications for dilated cardiomyopathy.
  • Systematic investigation of RNA recognition motif proteins in mouse neocortex
  • Genome-wide mapping of RBM20 target mRNAs
  • Expression analysis in parvalbumin interneurons and mitral cells
  • RBM20 is expressed in cortical parvalbumin interneurons and olfactory bulb mitral cells
  • Loss of neuronal RBM20 reduces mature mRNAs notably in genes with long introns
  • RBM20 ensures fidelity of pre-mRNA splicing in neurons.

Abstract

Precise coordination of molecular programs and neuronal growth governs the formation, maintenance, and adaptation of neuronal circuits. RNA metabolism has emerged as a key regulatory node of neural development and nervous system pathologies. To uncover cell-type-specific RNA regulators, we systematically investigated expression of RNA recognition motif-containing proteins in the mouse neocortex. Surprisingly, we found RNA-binding motif protein 20 (RBM20), an alternative splicing regulator associated with dilated cardiomyopathy, to be expressed in cortical parvalbumin interneurons and mitral cells of the olfactory bulb. Genome-wide mapping of RBM20 target mRNAs revealed that neuronal RBM20 binds pre-mRNAs in distal intronic regions. Loss of neuronal RBM20 has only modest impact on alternative splice isoforms but results in a significant reduction in an array of mature mRNAs in the neuronal cytoplasm. This phenotype is particularly pronounced for genes with long introns that encode synaptic proteins. We hypothesize that RBM20 ensures fidelity of pre-mRNA splicing by suppressing nonproductive splicing events in long neuronal genes. This work highlights a common requirement for RBM20-dependent transcriptome regulation in cardiomyocytes and neurons and demonstrates that a major genetic risk factor of heart disease impacts neuronal gene expression.

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Cite This Study

Bartolomei et al. (2026) studied this question.

synapsesocial.com/papers/6966f33213bf7a6f02c01150https://doi.org/10.7554/elife.104808.3
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Also Consider

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

  1. 1RBM20-Related Cardiomyopathy: Current Understanding and Future Options2021 · 55 citations
  2. 2Alternative Splicing Regulator RBM20 and Cardiomyopathy2018 · 90 citations
  3. 3Abstract Wed043: Genetic Variants in RNA Binding Motif Protein 20 Cause Early-onset Heart Failure by Disrupting Post-Transcriptional Process2025
  4. 4Disruption of the nuclear localization signal in RBM20 is causative in dilated cardiomyopathy2022 · 2 citations
  5. 5Muscle-Specific Mis-Splicing and Heart Disease Exemplified by RBM202018 · 37 citations