Ephrin-Eph signalling drives the asymmetric division of notochord/neural precursors in Ciona embryos

Author:

Picco Vincent1,Hudson Clare1,Yasuo Hitoyoshi1

Affiliation:

1. Developmental Biology Unit, Université Pierre et Marie Curie(Paris VI) and CNRS, Observatoire Océanologique, 06230 Villefranche sur mer, France.

Abstract

Asymmetric cell divisions produce two sibling cells with distinct fates,providing an important means of generating cell diversity in developing embryos. Many examples of such cell divisions have been described, but so far only a limited number of the underlying mechanisms have been elucidated. Here,we have uncovered a novel mechanism controlling an asymmetric cell division in the ascidian embryo. This division produces one notochord and one neural precursor. Differential activation of extracellular-signal-regulated kinase(ERK) between the sibling cells determines their distinct fates, with ERK activation promoting notochord fate. We first demonstrate that the segregation of notochord and neural fates is an autonomous property of the mother cell and that the mother cell acquires this functional polarity via interactions with neighbouring ectoderm precursors. We show that these cellular interactions are mediated by the ephrin-Eph signalling system, previously implicated in controlling cell movement and adhesion. Disruption of contacts with the signalling cells or inhibition of the ephrin-Eph signal results in the symmetric division of the mother cell, generating two notochord precursors. Finally, we demonstrate that the ephrin-Eph signal acts via attenuation of ERK activation in the neural-fated daughter cell. We propose a model whereby directional ephrin-Eph signals functionally polarise the notochord/neural mother cell, leading to asymmetric modulation of the FGF-Ras-ERK pathway between the daughter cells and, thus, to their differential fate specification.

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

Reference49 articles.

1. Bertrand, V., Hudson, C., Caillol, D., Popovici, C. and Lemaire,P. (2003). Neural tissue in ascidian embryos is induced by FGF9/16/20, acting via a combination of maternal GATA and Ets transcription factors. Cell115,615-627.

2. Betschinger, J. and Knoblich, J. A. (2004). Dare to be different: asymmetric cell division in Drosophila, C. elegans and vertebrates. Curr. Biol.14,R674-R685.

3. Choksi, S. P., Southall, T. D., Bossing, T., Edoff, K., de Wit,E., Fischer, B. E., van Steensel, B., Micklem, G. and Brand, A. H.(2006). Prospero acts as a binary switch between self-renewal and differentiation in Drosophila neural stem cells. Dev. Cell11,775-789.

4. Christen, B. and Slack, J. M. (1999). Spatial response to fibroblast growth factor signalling in Xenopus embryos. Development126,119-125.

5. Corbo, J. C., Levine, M. and Zeller, R. W.(1997). Characterization of a notochord-specific enhancer from the Brachyury promoter region of the ascidian, Ciona intestinalis. Development124,589-602.

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