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May 2, 20261 citations

RNA signaling in cellular plasticity during homeostasis and regeneration.

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ANAjai C NagarajEAEhsan Pashay AhiMÄMinna‐Liisa Änkö

Key Points

  • This mini-review aims to explore how RNA acts as a crucial signaling mechanism in altering cell identity during homeostasis and regeneration.
  • Reviewed literature on endogenous and damage-released RNAs in different tissue systems.
  • Discussed roles of repetitive-element-derived RNAs and long-noncoding RNAs in stem and progenitor cell plasticity.
  • Examined extracellular signaling mechanisms involving RNA in various regenerative contexts.
  • Extracellular RNA influences inflammatory and stromal responses in tissue injury.
  • Stress sensing mechanisms involving lncRNAs are pivotal in cell-fate determination and plasticity.
  • RNA functions as a rheostat, dynamically regulating cellular behavior during development and repair.

Abstract

Cells and tissues constantly read and broadcast information through RNA. This mini-review explores how endogenous and damage-released RNAs act as instructive signals that rewire cell identity during steady-state homeostasis and injury repair. We will cover how repetitive-element-derived RNAs and regulatory long-noncoding RNAs (lncRNAs) tune stem and progenitor plasticity in hematopoietic, pluripotent, and muscle systems by coupling stress sensing to cell-fate decisions. We will also outline extracellular dsRNA/TLR3 signaling and injury-induced lncRNAs in epithelial, neural, cardiac, and vascular regeneration, and show how extracellular RNA shapes inflammatory and stromal responses. Together, these concepts present RNA as an active rheostat of cellular plasticity across development, tissue maintenance, and regeneration.

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Cite This Study

Nagaraj et al. (2026) studied this question.

synapsesocial.com/papers/69f5941871405d493affeee9https://doi.org/10.1016/j.gde.2026.102478
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