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1.
Sci Rep ; 4: 4289, 2014 Mar 06.
Article in English | MEDLINE | ID: mdl-24598795

ABSTRACT

The evolutionarily conserved Hippo signaling pathway controls organ size by regulating cell proliferation and apoptosis and this process involves Yap1. The zebrafish Yap1 acts during neural differentiation, but its function is not fully understood. The detailed analysis of yap1 expression in proliferative regions, revealed it in the otic placode that gives rise to the lateral line system affected by the morpholino-mediated knockdown of Yap1. The comparative microarray analysis of transcriptome of Yap1-deficient embryos demonstrated changes in expression of many genes, including the Wnt signaling pathway and, in particular, prox1a known for its role in development of mechanoreceptors in the lateral line. The knockdown of Yap1 causes a deficiency of differentiation of mechanoreceptors, and this defect can be rescued by prox1a mRNA. Our studies revealed a role of Yap1 in regulation of Wnt signaling pathway and its target Prox1a during differentiation of mechanosensory cells.


Subject(s)
Cell Differentiation/genetics , Hair Cells, Auditory/cytology , Hair Cells, Auditory/metabolism , Transcription Factors/genetics , Zebrafish/genetics , Animals , Embryonic Development/genetics , Gene Expression , Gene Expression Regulation, Developmental , Gene Knockdown Techniques , Protein Binding , Signal Transduction , Transcription Factors/metabolism , Zebrafish/embryology , Zebrafish/metabolism
2.
PLoS One ; 8(10): e77171, 2013.
Article in English | MEDLINE | ID: mdl-24130849

ABSTRACT

Tbx2 is a member of the T-box family of transcription factors essential for embryo- and organogenesis. A deficiency in the zebrafish paralogue tbx2a causes abnormalities of the pharyngeal arches in a p53-independent manner. The pharyngeal arches are formed by derivatives of all three embryonic germ layers: endodermal pouches, mesenchymal condensations and neural crest cells. While tbx2a expression is restricted to the endodermal pouches, its function is required for the normal morphogenesis of the entire pharyngeal arches. Given the similar function of Tbx1 in craniofacial development, we explored the possibility of an interaction between Tbx1 and Tbx2a. The use of bimolecular fluorescence complementation revealed the interaction between Tbx2a and Tbx1, thus providing support for the idea that functional interaction between different, co-expressed Tbx proteins could be a common theme across developmental processes in cell lineages and tissues. Together, this work provides mechanistic insight into the role of TBX2 in human disorders affecting the face and neck.


Subject(s)
Body Patterning , Branchial Region/embryology , Endoderm/embryology , T-Box Domain Proteins/metabolism , Zebrafish Proteins/metabolism , Animals , Gene Expression Regulation, Developmental , HEK293 Cells , Humans , Mesoderm/embryology , Zebrafish/embryology
3.
Biol Open ; 1(8): 747-53, 2012 Aug 15.
Article in English | MEDLINE | ID: mdl-23213468

ABSTRACT

The yolk syncytial layer (YSL) performs multiple critical roles during zebrafish development. However, little is known about the cellular and molecular mechanisms that underlie the formation of this important extraembryonic structure. Here, we demonstrate by timelapse confocal microscopy of a transgenic line expressing membrane-targeted GFP that the YSL forms as a result of the absence of cytokinesis between daughter nuclei at the tenth mitotic division and the regression of pre-existing marginal cell membranes, thus converting the former margin of the blastoderm into a syncytium. We show that disruption of components of the cytoskeleton induces the formation of an expanded YSL, and identify Rock1 as the regulator of cytoskeletal dynamics that lead to YSL formation. Our results suggest that the YSL forms as a result of controlled cytokinesis failure in the marginal blastomeres, and Rock1 function is necessary for this process to occur. Uncovering the cellular and molecular mechanisms underlying zebrafish YSL formation offers significant insight into syncytial development in other tissues as well as in pathological conditions.

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