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Zebrafish eaf1 and eaf2/u19 Mediate Effective Convergence and Extension Movements through the Maintenance of wnt11 and wnt5 Expression

机译:斑马鱼eaf1和eaf2 / u19通过维护wnt11和wnt5表达介导有效的收敛和延伸运动

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摘要

Studies have attributed several functions to the Eaf family, including tumor suppression and eye development. Given the potential association between cancer and development, we set forth to explore Eaf1 and Eaf2/U19 activity in vertebrate embryogenesis, using zebrafish. In situ hybridization revealed similar eaf1 and eaf2/u19 expression patterns. Morpholino-mediated knockdown of either eaf1 or eaf2/u19 expression produced similar morphological changes that could be reversed by ectopic expression of target or reciprocal-target mRNA. However, combination of Eaf1 and Eaf2/U19 (Eafs)-morpholinos increased the severity of defects, suggesting that Eaf1 and Eaf2/U19 only share some functional redundancy. The Eafs knockdown phenotype resembled that of embryos with defects in convergence and extension movements. Indeed, knockdown caused expression pattern changes for convergence and extension movement markers, whereas cell tracing experiments using kaeda mRNA showed a correlation between Eafs knockdown and cell migration defects. Cardiac and pancreatic differentiation markers revealed that Eafs knockdown also disrupted midline convergence of heart and pancreatic organ precursors. Noncanonical Wnt signaling plays a key role in both convergence and extension movements and midline convergence of organ precursors. We found that Eaf1 and Eaf2/U19 maintained expression levels of wnt11 and wnt5. Moreover, wnt11 or wnt5 mRNA partially rescued the convergence and extension movement defects occurring in eafs morphants. Wnt11 and Wnt5 converge on rhoA, so not surprisingly, rhoA mRNA more effectively rescued defects than either wnt11 or wnt5 mRNA alone. However, the ectopic expression of wnt11 and wnt5 did not affect eaf1 and eaf2/u19 expression. These data indicate that eaf1 and eaf2/u19 act upstream of noncanonical Wnt signaling to mediate convergence and extension movements.
机译:研究已将Eaf家族的一些功能归功于它,包括抑制肿瘤和促进眼睛发育。考虑到癌症与发育之间的潜在联系,我们着手使用斑马鱼探索Eaf1和Eaf2 / U19在脊椎动物胚胎发生中的活性。原位杂交显示相似的eaf1和eaf2 / u19表达模式。 eaf1或eaf2 / u19表达的吗啉介导的敲低产生了相似的形态变化,可以通过靶标或相互靶标mRNA的异位表达来逆转。但是,Eaf1和Eaf2 / U19(Eafs)-吗啉代的组合增加了缺陷的严重性,这表明Eaf1和Eaf2 / U19仅共享一些功能冗余。 Eafs的击倒表型类似于具有会聚和延伸运动缺陷的胚胎。确实,敲除引起收敛和延伸运动标记的表达模式改变,而使用kaeda mRNA的细胞追踪实验显示Eafs敲除与细胞迁移缺陷之间存在相关性。心脏和胰腺的分化标志物表明,Eafs敲低还破坏了心脏和胰腺器官前体的中线会聚。非经典Wnt信号在器官前体的融合和延伸运动以及中线融合中都起着关键作用。我们发现Eaf1和Eaf2 / U19维持wnt11和wnt5的表达水平。此外,wnt11或wnt5 mRNA可以部分挽救eafs形态发生的收敛和延伸运动缺陷。 Wnt11和Wnt5融合在rhoA上,因此毫不奇怪,rhoA mRNA比单独的wnt11或wnt5 mRNA更有效地挽救了缺陷。但是,wnt11和wnt5的异位表达不会影响eaf1和eaf2 / u19的表达。这些数据表明eaf1和eaf2 / u19在非经典Wnt信号的上游起作用,以介导会聚和扩展运动。

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