Modeling coexistence of oscillation and Delta/Notch-mediated lateral inhibition in pancreas development and neurogenesis

•Simulating aspects of pancreas development.•Multicellular compartment model describes generation of Neurog3 endocrine precursors.•Scattered distribution of Neurog3 cells is ascribed to Delta/Notch mediated lateral inhibition.•Similar to neurogenesis, a common network design enforces oscillations be...

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Veröffentlicht in:Journal of theoretical biology 2017-10, Vol.430, p.32-44
Hauptverfasser: Tiedemann, Hendrik B., Schneltzer, Elida, Beckers, Johannes, Przemeck, Gerhard K.H., Hrabě de Angelis, Martin
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Sprache:eng
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Zusammenfassung:•Simulating aspects of pancreas development.•Multicellular compartment model describes generation of Neurog3 endocrine precursors.•Scattered distribution of Neurog3 cells is ascribed to Delta/Notch mediated lateral inhibition.•Similar to neurogenesis, a common network design enforces oscillations before stabilization. During pancreas development, Neurog3 positive endocrine progenitors are specified by Delta/Notch (D/N) mediated lateral inhibition in the growing ducts. During neurogenesis, genes that determine the transition from the proneural state to neuronal or glial lineages are oscillating before their expression is sustained. Although the basic gene regulatory network is very similar, cycling gene expression in pancreatic development was not investigated yet, and previous simulations of lateral inhibition in pancreas development excluded by design the possibility of oscillations. To explore this possibility, we developed a dynamic model of a growing duct that results in an oscillatory phase before the determination of endocrine progenitors by lateral inhibition. The basic network (D/N + Hes1 + Neurog3) shows scattered, stable Neurog3 expression after displaying transient expression. Furthermore, we included the Hes1 negative feedback as previously discussed in neurogenesis and show the consequences for Neurog3 expression in pancreatic duct development. Interestingly, a weakened HES1 action on the Hes1 promoter allows the coexistence of stable patterning and oscillations. In conclusion, cycling gene expression and lateral inhibition are not mutually exclusive. In this way, we argue for a unified mode of D/N mediated lateral inhibition in neurogenic and pancreatic progenitor specification.
ISSN:0022-5193
1095-8541
DOI:10.1016/j.jtbi.2017.06.006