AI Article Synopsis

  • * New research highlights the role of cytoskeletal forces in remodeling nuclear membraneless compartments called biomolecular condensates, which are crucial for RNA processing and cell division, particularly in reproductive health.
  • * The review explores the broader implications of this mechanical remodeling of nuclear condensates across various health and disease contexts, emphasizing its significance in reproduction, cancer, and premature aging.

Article Abstract

Organism health relies on cell proliferation, migration, and differentiation. These universal processes depend on cytoplasmic reorganization driven notably by the cytoskeleton and its force-generating motors. Their activity generates forces that mechanically agitate the cell nucleus and its interior. New evidence from reproductive cell biology revealed that these cytoskeletal forces can be tuned to remodel nuclear membraneless compartments, known as biomolecular condensates, and regulate their RNA processing function for the success of subsequent cell division that is critical for fertility. Both cytoskeletal and nuclear condensate reorganization are common to numerous physiological and pathological contexts, raising the possibility that mechanical remodeling of nuclear condensates may be a much broader mechanism regulating their function. Here, we review this newfound mechanism of condensate remodeling and venture into the contexts of health and disease where it may be relevant, with a focus on reproduction, cancer, and premature aging.

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Source
http://dx.doi.org/10.1152/physiol.00027.2024DOI Listing

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