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Duran-Armenta, L. F.

Publications and source records attributed to Duran-Armenta, L. F..

2 recordsLinked to original sources

Disease-linked mutations in hnRNPA2B1 accelerate condensate maturation and promote amyloid aggregation

Heterogeneous nuclear ribonucleoprotein A2B1 (hnRNPA2B1) is a multifunctional RNA-binding protein that undergoes liquid-liquid phase separation (LLPS), contributing to the assembly of membraneless organelles across different cellular contexts. However, dysregulated phase separation can drive the transition from functional condensates to pathological protein aggregates. Two mutations in the low-complexity domain (LCD) of hnRNPA2B1 (D302V and P310L) have been linked to neurodegenerative diseases. How these mutations alter the interplay between LLPS and aggregation remains poorly understood. Here, we show that these disease-linked mutations accelerate condensate maturation and promote amyloid-like aggregation of hnRNPA2B1, with fibrils emerging from condensate-like cores. To dissect the mechanistic link between phase separation, aggregation, and disease, we focused on a conserved 25-amino-acid region within the LCD harboring both mutation sites. Deletion of this region markedly impairs LLPS and abolishes aggregation, revealing its contribution to both processes. Isolated peptides derived from this region have an intrinsic propensity for amyloid-like fibril formation, which is enhanced by the mutations. Although unable to phase separate, these peptides remodel condensate morphology and nucleate aggregation of the LCD. Together, our results identify a sequence-encoded mechanism linking disease-associated mutations to altered condensate behavior and amyloid aggregation, providing molecular insights into how aberrant phase transitions may contribute to hnRNPA2B1-associated disease.

biochemistry↗

Expression and Purification of Full-Length hnRNPA2B1 for Biophysical Characterization of Liquid-Liquid Phase Separation

Heterogeneous nuclear ribonucleoprotein A2/B1 (hnRNPA2B1) is a multifunctional RNA-binding protein involved in RNA maturation and mRNA transport. It has recently been shown to undergo liquid-liquid phase separation (LLPS), contributing to the assembly of membraneless organelles. Moreover, dysregulation of LLPS is associated with the formation of pathogenic protein aggregates, in which hnRNPA2B1 is frequently found. Despite its biological and pathological relevance, studies on the full-length protein remain limited due to its intrinsically disordered, low-complexity domain, which renders hnRNPA2B1 highly aggregation-prone and difficult to purify. In this study, we report the successful expression and purification of full-length hnRNPA2B1 with high purity and minimal nucleic acid contamination. By optimizing buffer conditions, specifically ionic strength and pH, we maintain the protein in solution following cleavage of its solubility tag. Preliminary in vitro characterization under near-physiological conditions reveals that purified hnRNPA2B1 undergoes LLPS, forming dynamic liquid-like droplets that grow and mature into amorphous aggregates. Our approach provides a robust method for purifying hnRNPA2B1 suitable for LLPS and aggregation studies. This strategy may also be useful to purify other aggregation-prone, intrinsically disordered proteins.

biochemistry↗