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◆ Communications Biology2026-01-21· Dictyostelium discoideum

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

Yukihisa Hayashida, Yuki Gomibuchi, Chikoo Oosawa, Takuo Yasunaga, Y. MORIMOTO

原始摘要(英文原文)· Original 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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Establishing functional giant Dictyostelium cells reveals front–rear polarity in intracellular signaling — 科研速览 Science Skim