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1.
Elife ; 62017 05 24.
Article in English | MEDLINE | ID: mdl-28537554

ABSTRACT

Neural patterning involves regionalised cell specification. Recent studies indicate that cell dynamics play instrumental roles in neural pattern refinement and progression, but the impact of cell behaviour and morphogenesis on neural specification is not understood. Here we combine 4D analysis of cell behaviours with dynamic quantification of proneural expression to uncover the construction of the zebrafish otic neurogenic domain. We identify pioneer cells expressing neurog1 outside the otic epithelium that migrate and ingress into the epithelialising placode to become the first otic neuronal progenitors. Subsequently, neighbouring cells express neurog1 inside the placode, and apical symmetric divisions amplify the specified pool. Interestingly, pioneer cells delaminate shortly after ingression. Ablation experiments reveal that pioneer cells promote neurog1 expression in other otic cells. Finally, ingression relies on the epithelialisation timing controlled by FGF activity. We propose a novel view for otic neurogenesis integrating cell dynamics whereby ingression of pioneer cells instructs neuronal specification.


Subject(s)
Basic Helix-Loop-Helix Transcription Factors/metabolism , Ear/embryology , Epithelium/embryology , Nerve Tissue Proteins/metabolism , Nervous System/embryology , Neuroepithelial Cells/physiology , Neurogenesis , Zebrafish Proteins/metabolism , Zebrafish/embryology , Animals , Body Patterning , Cell Movement
2.
Sci Rep ; 6: 19223, 2016 Jan 14.
Article in English | MEDLINE | ID: mdl-26771085

ABSTRACT

Transcriptional and signaling networks establish complex cross-regulatory interactions that drive cellular differentiation during development. Using microarrays we identified the gene encoding the ligand Wnt9a as a candidate target of Neurogenin3, a basic helix-loop-helix transcription factor that functions as a master regulator of pancreatic endocrine differentiation. Here we show that Wnt9a is expressed in the embryonic pancreas and that its deficiency enhances activation of the endocrine transcriptional program and increases the number of endocrine cells at birth. We identify the gene encoding the endocrine transcription factor Nkx2-2 as one of the most upregulated genes in Wnt9a-ablated pancreases and associate its activation to reduced expression of the Wnt effector Tcf7l2. Accordingly, in vitro studies confirm that Tcf7l2 represses activation of Nkx2-2 by Neurogenin3 and inhibits Nkx2-2 expression in differentiated ß-cells. Further, we report that Tcf7l2 protein levels decline upon initiation of endocrine differentiation in vivo, disclosing the downregulation of this factor in the developing endocrine compartment. These findings highlight the notion that modulation of signalling cues by lineage-promoting factors is pivotal for controlling differentiation programs.


Subject(s)
Organogenesis , Pancreas/embryology , Pancreas/metabolism , Transcription Factor 7-Like 2 Protein/metabolism , Wnt Proteins/deficiency , Animals , Basic Helix-Loop-Helix Transcription Factors/metabolism , Cell Count , Endocrine Cells/metabolism , Gene Expression Regulation, Developmental , Gene Knockout Techniques , Homeobox Protein Nkx-2.2 , Homeodomain Proteins/genetics , Mice , Models, Biological , Nerve Tissue Proteins/metabolism , Organogenesis/genetics , Pancreas/anatomy & histology , Pancreas/cytology , Phenotype , Signal Transduction , Transcription Factor 7-Like 2 Protein/genetics , Transcription Factors/genetics , Zebrafish Proteins
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