Developmental Cell
Volume 23, Issue 5, 13 November 2012, Pages 995-1005
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Article
Single-Cell-Resolution Imaging of the Impact of Notch Signaling and Mitosis on Segmentation Clock Dynamics

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Summary

Vertebrate body segmentation is controlled by the segmentation clock, a molecular oscillator involving transcriptional oscillations of cyclic genes in presomitic mesoderm cells. The rapid and highly dynamic nature of this oscillating system has proved challenging for study at the single-cell level. We achieved visualization of clock activity with a cellular level of resolution in living embryos, allowing direct comparison of oscillations in neighbor cells. We provide direct evidence that presomitic mesoderm cells oscillate asynchronously in zebrafish Notch pathway mutants. By tracking oscillations in mitotic cells, we reveal that a robust cell-autonomous, Notch-independent mechanism resumes oscillations after mitosis. Finally, we find that cells preferentially divide at a certain oscillation phase, likely reducing the noise generated by cell division in cell synchrony and suggesting an intriguing relationship between the mitotic cycle and clock oscillation.

Highlights

► Segmentation clock dynamics are imaged with cellular level of resolution ► Presomitic mesoderm cells oscillate asynchronously in the absence of Notch signaling ► After mitosis, sibling cells resume oscillations in tight synchrony with each other ► Mitosis occurs preferentially at the trough of the oscillation phase

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3

Present address: Laboratoire de Biologie Moléculaire de la Cellule, UMR 5239 CNRS-UCBL-ENS Lyon, 46 Allée d'Italie, 69364 Lyon Cedex 07, France

4

Present address: Department of Molecular Genetics, The Ohio State University, Columbus, OH 43210, USA

5

These authors contributed equally to this work