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Zebrafish churchill regulates developmental gene expression and cell migration

机译:斑马鱼丘吉尔调节发育基因表达和细胞迁移

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Background: Regulation of developmental signaling pathways is essential for embryogenesis. The small putative zinc finger protein, Churchill (ChCh) has been implicated in modulation of both TGF-β and FGF signaling. Results: We used zinc finger nuclease (ZFN) mediated gene targeting to disrupt the zebrafish chch locus and generate the first chch mutations. Three induced lesions produce frameshift mutations that truncate the protein in the third of five β-strands that comprise the protein. Surprisingly, zygotic and maternal zygotic chch mutants are viable. Mutants have elevated expression of mesodermal markers, but progress normally through early development. chch mutants are sensitive to exogenous Nodal. However, neither misregulation of FGF targets nor sensitivity to exogenous FGF was detected. Finally, chch mutant cells were found to undergo inappropriate migration in cell transplant assays. Conclusions: Together, these results suggest that chch is not essential for survival, but functions to modulate early mesendodermal gene expression and limit cell migration. Developmental Dynamics 242:614-621, 2013.
机译:背景:发育信号通路的调控对于胚胎发生至关重要。假定的小锌指蛋白丘吉尔(ChCh)与TGF-β和FGF信号传导的调节有关。结果:我们使用锌指核酸酶(ZFN)介导的基因靶向来破坏斑马鱼chch基因座并产生第一个chch突变。三个诱发的病变产生移码突变,该突变会截断构成蛋白质的5条β链中三分之一的蛋白质。令人惊讶地,合子和母体合子chch突变体是可行的。突变体的中胚层标记物表达升高,但通常会通过早期发育而进展。 chch突变体对外源性Nodal敏感。然而,既未检测到FGF靶的失调也未检测到对外源FGF的敏感性。最后,在细胞移植试验中发现chch突变细胞发生不适当的迁移。结论:在一起,这些结果表明chch对于生存不是必需的,但具有调节早期中胚层基因表达和限制细胞迁移的功能。发展动态242:614-621,2013。

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