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Metastable condensates suppress conversion to amyloid fibrils.


ABSTRACT: Stress granules form via co-condensation of RNA binding proteins with prion-like low complexity domains (PLCDs) and RNA molecules released by stress-induced polysomal runoff. Homotypic interactions among PLCDs can drive amyloid fibril formation and this is enhanced by ALS-associated mutations. We find that homotypic interactions that drive condensation versus fibril formation are separable for A1-LCD, the PLCD of hnRNPA1. These separable interactions lead to condensates that are metastable versus fibrils that are globally stable. Metastable condensates suppress fibril formation, and ALS-associated mutations enhance fibril formation by weakening condensate metastability. Mutations designed to enhance A1-LCD condensate metastability restore wild-type behaviors of stress granules in cells even when ALS-associated mutations are present. This suggests that fibril formation can be suppressed by enhancing condensate metastability through condensate-driving interactions.

SUBMITTER: Das T 

PROVIDER: S-EPMC10925303 | biostudies-literature | 2024 Mar

REPOSITORIES: biostudies-literature

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Tunable metastability of condensates reconciles their dual roles in amyloid fibril formation.

Das Tapojyoti T   Zaidi Fatima K FK   Farag Mina M   Ruff Kiersten M KM   Mahendran Tharun Selvam TS   Singh Anurag A   Gui Xinrui X   Messing James J   Paul Taylor J J   Banerjee Priya R PR   Pappu Rohit V RV   Mittag Tanja T  

bioRxiv : the preprint server for biology 20250322


Stress granules form via co-condensation of RNA-binding proteins containing prion-like low complexity domains (PLCDs) with RNA molecules. Homotypic interactions among PLCDs can drive amyloid fibril formation that is enhanced by ALS-associated mutations. We report that condensation- versus fibril-driving homotypic interactions are separable for A1-LCD, the PLCD of hnRNPA1. Separable interactions lead to thermodynamically metastable condensates and globally stable fibrils. Interiors of condensates  ...[more]

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