首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >vHnf1 regulates specification of caudal rhombomere identity in the chick hindbrain.
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vHnf1 regulates specification of caudal rhombomere identity in the chick hindbrain.

机译:vHnf1调节雏鸡后脑尾状菱形的规格。

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The homeobox-containing gene variant hepatocyte nuclear factor-1 (vHnf1) has recently been shown to be involved in zebrafish caudal hindbrain specification, notably in the activation of MafB and Kro x 20 expression. We have explored this regulatory network in the chick by in ovo electroporation in the neural tube. We show that mis-expression of vHnf1 confers caudal identity to more anterior regions of the hindbrain. Ectopic expression of mvHnf1 leads to ectopic activation of MafB and Kro x 20, and downregulation of Hoxb1 in rhombomere 4. Unexpectedly, mvhnf1 strongly upregulates Fgf3 expression throughout the hindbrain, in both a cell-autonomous and a non-cell-autonomous manner. Blockade of FGF signaling correlates with a selective loss of MafB and Kro x 20 expression, without affecting the expression of vHnf1, Fgf3, or Hoxb1. Based on these observations, we propose that in chick, as in zebrafish, vHnf1 acts with FGF to promote caudal hindbrain identity by activating MafB and Kro x 20 expression. However, our data suggest differences in the vHnf1 downstream cascade in different vertebrates.
机译:最近已证明,含有同源盒的基因变异肝细胞核因子-1(vHnf1)参与斑马鱼尾后脑规范,特别是在激活MafB和Kro x 20表达中。我们已经通过神经管中的卵电穿孔探索了雏鸡中的这种调节网络。我们显示vHnf1的错误表达赋予后脑的更多前部区域的尾巴身份。 mvHnf1的异位表达导致MafB和Kro x 20的异位激活,并在菱形4中下调Hoxb1的表达。出乎意料的是,mvhnf1以细胞自主和非细胞自主方式强烈上调了整个后脑的Fgf3表达。 FGF信号传导的阻断与MafB和Kro x 20表达的选择性丧失相关,而不会影响vHnf1,Fgf3或Hoxb1的表达。基于这些观察,我们建议像在斑马鱼中一样,在小鸡中,vHnf1与FGF共同作用,通过激活MafB和Kro x 20表达来促进尾后脑身份。但是,我们的数据表明vHnf1下游级联在不同脊椎动物中的差异。

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