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◆ Nature Communications2025-11-14· Messenger RNA

Stress changes the material state of a bacterial biomolecular condensate and shifts its function from mRNA decay to storage

Luis A. Ortiz‐Rodríguez, Hadi M. Yassine, Ali Hatami, Vidhyadhar Nandana, Christopher A. Azaldegui, Jiayu Cheng, Yingxi Zhu, Jared M. Schrader, Julie S. Biteen

原始摘要(英文原文)· Original abstract
Bacterial ribonucleoprotein bodies (BR-bodies) are dynamic biomolecular condensates that play a pivotal role in RNA metabolism. We investigated how BR-bodies significantly influence mRNA fate by transitioning between liquid- and solid-like states in response to stress. With a combination of single-molecule and bulk fluorescence microscopy, biochemical assays, and quantitative analyses, we determine that BR-bodies promote efficient mRNA decay in a liquid-like condensate during exponential growth. On the other hand, BR-bodies are repurposed from sites of mRNA decay to reservoirs for mRNA storage under stress; a functional change that is enabled by their transition to a more rigid state, marked by reduced internal dynamics, increased molecular density, and prolonged residence time of Ribonuclease E. Furthermore, we manipulated ATP levels and translation rates, and we conclude that the accumulation of ribosome-depleted mRNA is a key factor driving BR-body rigification, and that condensate maturation further contributes to this process. Upon nutrient replenishment, stationary-phase BR-bodies disassemble, releasing stored mRNAs for rapid translation, demonstrating that BR-body function is governed by a reversible mechanism for resource management. These findings reveal adaptive strategies by which bacteria regulate RNA metabolism through condensate-mediated control of mRNA decay and storage. Bacterial ribonucleoprotein bodies are dynamic biomolecular condensates that play roles in RNA metabolism. Here, Ortiz-Rodríguez et al. show that, under stress, these condensates shift from a liquid state to a rigid state and switch their function from mRNA decay to mRNA storage, thus enabling transcript preservation and rapid recovery upon nutrient replenishment.
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Stress changes the material state of a bacterial biomolecular condensate and shifts its function from mRNA decay to storage — 科研速览 Science Skim