Nodal Signaling Range Is Regulated by Proprotein Convertase-Mediated Maturation

Publication date

2015-03-09

Authors

Tessadori, FedericoISNI 0000000394565362
Noël, Emily S.
Rens, Elisabeth G.
Magliozzi, Roberto
Evers-van Gogh, Inkie
Guardavaccaro, Daniele
Merks, Roeland M H
Bakkers, JeroenISNI 0000000387784276

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Supervisors

Document Type

Article

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taverne

Abstract

Tissue patterning is established by extracellular growth factors or morphogens. Although different theoretical models explaining specific patterns have been proposed, our understanding of tissue pattern establishment invivo remains limited. In many animal species, left-right patterning is governed by a reaction-diffusion system relying on the different diffusivity of an activator, Nodal, and an inhibitor, Lefty. In a genetic screen, we identified a zebrafish loss-of-function mutant for the proprotein convertase FurinA. Embryological and biochemical experiments demonstrate that cleavage of the Nodal-related Spaw proprotein into a mature form by FurinA is required for Spaw gradient formation and activation of Nodal signaling. We demonstrate that FurinA is required cell-autonomously for the long-range signaling activity of Spaw and no other Nodal-related factors. Combined insilico and invivo approaches support a model in which FurinA controls the signaling range of Spaw by cleaving its proprotein into a mature, extracellular form, consequently regulating left-right patterning.

Keywords

Taverne, Developmental Biology, General Medicine, Journal Article, Research Support, Non-U.S. Gov't

Citation

Tessadori, F, Noël, E S, Rens, E G, Magliozzi, R, Evers-van Gogh, I, Guardavaccaro, D, Merks, R M H & Bakkers, J 2015, 'Nodal Signaling Range Is Regulated by Proprotein Convertase-Mediated Maturation', Developmental Cell, vol. 32, no. 5, pp. 631-639. https://doi.org/10.1016/j.devcel.2014.12.014