Inhibition of the cell cycle is required for convergent extension of the paraxial mesoderm during Xenopus neurulation
Open Access
- 15 April 2004
- journal article
- Published by The Company of Biologists in Development
- Vol. 131 (8) , 1703-1715
- https://doi.org/10.1242/dev.01054
Abstract
Coordination of morphogenesis and cell proliferation is essential during development. In Xenopus, cell divisions are rapid and synchronous early in development but then slow and become spatially restricted during gastrulation and neurulation. One tissue that transiently stops dividing is the paraxial mesoderm, a dynamically mobile tissue that forms the somites and body musculature of the embryo. We have found that cessation of cell proliferation is required for the proper positioning and segmentation of the paraxial mesoderm as well as the complete elongation of the Xenopus embryo. Instrumental in this cell cycle arrest is Wee2, a Cdk inhibitory kinase that is expressed in the paraxial mesoderm from mid-gastrula stages onwards. Morpholino-mediated depletion of Wee2 increases the mitotic index of the paraxial mesoderm and this results in the failure of convergent extension and somitogenesis in this tissue. Similar defects are observed if the cell cycle is inappropriately advanced by other mechanisms. Thus, the low mitotic index of the paraxial mesoderm plays an essential function in the integrated cell movements and patterning of this tissue.Keywords
This publication has 44 references indexed in Scilit:
- A single cdk inhibitor, p27Xic1, functions beyond cell cycle regulation to promote muscle differentiation inXenopusDevelopment, 2003
- The cdk inhibitor p27Xic1 is required for differentiation of primary neurones inXenopusDevelopment, 2003
- Xenopus bagpipe-related gene,koza, may play a role in regulation of cell proliferationDevelopmental Dynamics, 2002
- Cell cycle transition in early embryonic development of Xenopus laevisBiology of the Cell, 1998
- CYCLIN-DEPENDENT KINASES: Engines, Clocks, and MicroprocessorsAnnual Review of Cell and Developmental Biology, 1997
- Analysis of Dishevelled signalling pathways during Xenopus developmentCurrent Biology, 1996
- Expression of myosin heavy chain transcripts during Xenopus laevis developmentDevelopmental Biology, 1989
- Mitotic domains reveal early commitment of cells in Drosophila embryosTrends in Genetics, 1989
- A third striated muscle actin gene is expressed during early development in the amphibian Xenopus laevisJournal of Molecular Biology, 1988
- Isolation and characterization of sarcomeric actin genes expressed in Xenopus laevis embryosJournal of Molecular Biology, 1986