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Oscillations of the snail genes in the presomitic mesoderm coordinate segmental patterning and morphogenesis in vertebrate somitogenesis
Authors:Dale Jacqueline Kim  Malapert Pascale  Chal Jérome  Vilhais-Neto Gonçalo  Maroto Miguel  Johnson Teri  Jayasinghe Sachintha  Trainor Paul  Herrmann Bernhard  Pourquié Olivier
Institution:Howard Hughes Medical Institute, Stowers Institute for Medical Research, 1000 East 50(th) Street, Kansas City, Missouri 64110, USA.
Abstract:The segmented body plan of vertebrate embryos arises through segmentation of the paraxial mesoderm to form somites. The tight temporal and spatial control underlying this process of somitogenesis is regulated by the segmentation clock and the FGF signaling wavefront. Here, we report the cyclic mRNA expression of Snail 1 and Snail 2 in the mouse and chick presomitic mesoderm (PSM), respectively. Whereas Snail genes' oscillations are independent of NOTCH signaling, we show that they require WNT and FGF signaling. Overexpressing Snail 2 in the chick embryo prevents cyclic Lfng and Meso 1 expression in the PSM and disrupts somite formation. Moreover, cells mis-expressing Snail 2 fail to express Paraxis, remain mesenchymal, and are thereby inhibited from undergoing the epithelialization event that culminates in the formation of the epithelial somite. Thus, Snail genes define a class of cyclic genes that coordinate segmentation and PSM morphogenesis.
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