bioRxiv · 10.1101/2024.01.05.574380
Cooperation between Nodal and FGF signals regulates zebrafish cardiac cell migration and heart morphogenesis
Abstract
Asymmetric development of the vertebrate heart is driven by a complex sequence of morphogenetic cell movements, coordinated through precise interpretation of signaling cues by the heart primordia. Here, we show that Nodal signaling functions synergistically with FGF to stimulate the migration of cardiac progenitor cells (CPCs) during cardiac jogging--the first morphological asymmetry observed in zebrafish heart development. While Nodal directs the asymmetric migration of CPCs, we find FGF signaling to be dispensable for this asymmetry, suggesting that FGF plays a permissive rather than instructive role. We further demonstrate that Nodal signaling induces asymmetries in actin cytoskeletal dynamics that correlate with the directional migration of CPCs, while FGF does not influence this actin asymmetry. In addition to influencing jogging, FGF and Nodal synergize to ensure proper heart looping. We also provide evidence that FGF contributes to heart looping by promoting the differentiation of the second heart field. Together, these findings offer insight into how the spatiotemporal dynamics of signaling pathways regulate the cellular behaviors driving organ morphogenesis. Summary statementThis study explores the synergistic and independent roles of Nodal and FGF signaling in generating heart asymmetry.
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Gonzalez, V., Grant, M. G., Suzuki, M., Christophers, B., Williams, J. R., Burdine, R. D.. 2024-01-05. Cooperation between Nodal and FGF signals regulates zebrafish cardiac cell migration and heart morphogenesis. https://doi.org/10.1101/2024.01.05.574380
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