Notch activity acts as a sensor for extracellular calcium during vertebrate left-right determination
- PMID: 14712268
- DOI: 10.1038/nature02190
Notch activity acts as a sensor for extracellular calcium during vertebrate left-right determination
Abstract
During vertebrate embryo development, the breaking of the initial bilateral symmetry is translated into asymmetric gene expression around the node and/or in the lateral plate mesoderm. The earliest conserved feature of this asymmetric gene expression cascade is the left-sided expression of Nodal, which depends on the activity of the Notch signalling pathway. Here we present a mathematical model describing the dynamics of the Notch signalling pathway during chick embryo gastrulation, which reveals a complex and highly robust genetic network that locally activates Notch on the left side of Hensen's node. We identify the source of the asymmetric activation of Notch as a transient accumulation of extracellular calcium, which in turn depends on left-right differences in H+/K+-ATPase activity. Our results uncover a mechanism by which the Notch signalling pathway translates asymmetry in epigenetic factors into asymmetric gene expression around the node.
Comment in
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Developmental biology: asymmetric fixation.Nature. 2004 Jan 8;427(6970):111-2. doi: 10.1038/427111a. Nature. 2004. PMID: 14712262 No abstract available.
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