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January 23, 2026Communications Biology4 citationsOpen Access

Establishing functional giant Dictyostelium cells reveals front–rear polarity in intracellular signaling

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YHYukihisa HayashidaYGYuki GomibuchiCOChikoo Oosawa

Key Points

  • To investigate how intracellular signaling dynamics are influenced by cell polarity using giant Dictyostelium cells.
  • Developed a method to generate multinucleated Dictyostelium cells through partial cytokinesis inhibition
  • Used fluorescent probes to measure cAMP and Ca 2+ dynamics
  • Conducted high-resolution live-cell imaging for detailed observations
  • Mapped cAMP synthesis and decay kinetics using grid-based analysis
  • Identified front-to-rear propagation of cAMP signaling during cell activation
  • Observed a biphasic Ca 2+ response aligned with actin wave dynamics
  • Revealed asymmetric cAMP synthesis and secretion indicative of spatial regulation

Abstract

Abstract Intracellular signaling dynamics are often obscured by the spatial and temporal limitations of cell size. Here, we developed a method to enlarge Dictyostelium discoideum cells by partial cytokinesis inhibition, generating multinucleated yet functional giant cells. These cells retained chemotactic signaling, polarity, and motility, enabling high-resolution live-cell imaging. Using fluorescent probes for cAMP and Ca 2+ , we uncovered a directional, front-to-rear propagation of cAMP signaling and a biphasic Ca 2+ response coordinated with actin wave dynamics. Grid-based mapping revealed asymmetric cAMP synthesis and decay kinetics, and vesicle localization suggested spatially regulated cAMP secretion. Our findings demonstrate that intracellular signaling involves self-organized, spatially structured propagation events aligned with cellular polarity. The giant cell platform offers a powerful and generalizable strategy for dissecting the spatiotemporal logic of single-cell signaling.

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Cite This Study

Hayashida et al. (2026) studied this question.

synapsesocial.com/papers/69730f78c8125b09b0d1f3adhttps://doi.org/10.1038/s42003-025-09505-7
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