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Abstract

<jats:p>Cell migration frequently requires cells to traverse tissue environments with distinct physical and biochemical properties. How migrating cells preserve a common migratory program while adapting to these heterogeneous environments remains poorly understood. Here, we show that chick primordial germ cells (PGCs) preserve a common bleb-based migratory mode throughout embryogenesis despite migrating through mechanically distinct tissues. PGCs formed membrane blebs during both intravascular crawling and migration through the dorsal mesentery. However, nuclear envelope (NE) unfolding and activation of the NE-cPLA2 pathway occurred specifically during migration through the mechanically confined dorsal mesentery, where this pathway was required for bleb formation and efficient migration. In contrast, bleb formation during vascular crawling occurred independently of the NE-cPLA2 pathway, demonstrating that distinct molecular mechanisms can generate the same migratory behavior in different tissue environments. Together, these findings suggest that diverse environmental cues converge on a conserved bleb-forming machinery. We propose a hierarchical model in which migrating cells preserve a common migratory program by flexibly switching the upstream molecular mechanisms that initiate bleb formation according to the tissue environment.</jats:p>

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Keywords

migration cells migratory tissue environments

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