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RNA-driven phase transitions in biomolecular condensates

  • Gable Wadsworth
  • , Sukanya Srinivasan
  • , Lien Lai
  • , Moulisubhro Datta
  • , Venkat Gopalan
  • , Priya R. Banerjee
  • SUNY Buffalo
  • Ohio State University

Research output: Contribution to journalReview articlepeer-review

71 Scopus citations

Abstract

RNAs and RNA-binding proteins can undergo spontaneous or active condensation into phase-separated liquid-like droplets. These condensates are cellular hubs for various physiological processes, and their dysregulation leads to diseases. Although RNAs are core components of many cellular condensates, the underlying molecular determinants for the formation, regulation, and function of ribonucleoprotein condensates have largely been studied from a protein-centric perspective. Here, we highlight recent developments in ribonucleoprotein condensate biology with a particular emphasis on RNA-driven phase transitions. We also present emerging future directions that might shed light on the role of RNA condensates during evolution and spatiotemporal regulation in biology and inspire bioengineering of RNA-based therapeutics.

Original languageEnglish
Pages (from-to)3692-3705
Number of pages14
JournalMolecular Cell
Volume84
Issue number19
DOIs
StatePublished - Oct 3 2024

Keywords

  • RNA chaperones
  • RNP granules
  • gene regulation
  • helicases
  • liquid-liquid phase separation
  • percolation
  • stress granules

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