N-cadherin stabilises neural identity by dampening anti-neural signals

A switch from E- to N-cadherin regulates the transition from pluripotency to neural identity, but the mechanism by which cadherins regulate differentiation was previously unknown. Here, we show that the acquisition of N-cadherin stabilises neural identity by dampening anti-neural signals. We use qua...

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Veröffentlicht in:Development (Cambridge) 2019-11, Vol.146 (21)
Hauptverfasser: Punovuori, Karolina, Migueles, Rosa P, Malaguti, Mattias, Blin, Guillaume, Macleod, Kenneth G, Carragher, Neil O, Pieters, Tim, van Roy, Frans, Stemmler, Marc P, Lowell, Sally
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Sprache:eng
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Zusammenfassung:A switch from E- to N-cadherin regulates the transition from pluripotency to neural identity, but the mechanism by which cadherins regulate differentiation was previously unknown. Here, we show that the acquisition of N-cadherin stabilises neural identity by dampening anti-neural signals. We use quantitative image analysis to show that N-cadherin promotes neural differentiation independently of its effects on cell cohesiveness. We reveal that cadherin switching diminishes the level of nuclear β-catenin, and that N-cadherin also dampens FGF activity and consequently stabilises neural fate. Finally, we compare the timing of cadherin switching and differentiation and , and find that this process becomes dysregulated during differentiation. We propose that N-cadherin helps to propagate a stable neural identity throughout the emerging neuroepithelium, and that dysregulation of this process contributes to asynchronous differentiation in culture.
ISSN:0950-1991
1477-9129
DOI:10.1242/dev.183269