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Aberrant Phase Separation of two PKA RIbeta Neurological Disorder Mutants Leads to Mechanistically Distinct Signaling Deficits

GSE278676 Homo sapiens Expression profiling by high throughput sequencing 9 samples Submitted 2025/05/12 Platform GPL24676
Summary
Spatiotemporal regulation of key-node signaling molecules, such as 3’,5’-cyclic adenosine monophosphate (cAMP)-dependent protein kinase (PKA), is critical for normal cell physiology and susceptible to dysregulation in disease. Liquid-liquid phase separation (LLPS) is broadly recognized as a fundamental component of signal regulation, yet the connections between physiological and disease-linked biomolecular condensates are not well understood. Here, we show that an understudied, brain-specific PKA regulatory subunit, RIβ, forms biomolecular condensates with distinct features from the ubiquitous isoform, RIα. We demonstrate that two RIβ mutants linked to neurodegenerative (L50R) or neurodevelopmental (R335W) pathologies produce aberrant condensates which trap the PKA catalytic subunit within a gel-like matrix or cAMP-insensitive holoenzyme complex, respectively. RIβL50R condensates, in particular, lead to disrupted spatiotemporal control of PKA signaling and diminished PKA activity, resulting in phenotypic hallmarks of neurodegeneration. Our work highlights the functional importance of biomolecular condensates and the critical link between dysregulated LLPS and neurological disorders.
Published in
Aberrant phase separation of two PKA RIβ neurological disorder mutants leads to mechanistically distinct signaling deficits
Pool EH, Glebov-McCloud A, Lee HN et al. · Cell reports 2025 · PMID 40512625 · doi:10.1016/j.celrep.2025.115797
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Also filed as BioProject PRJNA1168189 and SRA study SRP536319. Searching any of these in the dataset finder brings you back here.

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