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首页> 外文期刊>Mechanisms of Development >Znfl1s are essential for patterning the anterior-posterior axis of zebrafish posterior hindbrain by acting as direct target genes of retinoic acid
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Znfl1s are essential for patterning the anterior-posterior axis of zebrafish posterior hindbrain by acting as direct target genes of retinoic acid

机译:ZnFl1s对于通过用作视黄酸的直接靶基因来图案化斑马鱼后后后骨的前后后轴是必不可少的

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摘要

RA (retinoic acid) signaling is essential for the patterning the hindbrain of vertebrates. Although hundreds of potential RA targets genes are identified, the ones other than hox genes playing roles in patterning anterior-posterior axis of hindbrain by mediating RA signaling remains largely unknown. Previously, we reported that znfl1s play essential roles in the formation of posterior neuroectoderm in zebrafish embryos. Here, we revealed that znfl1s play a critical role in patterning the posterior axis of hindbrain by maintaining the homeostasis of RA signaling in zebrafish embryos. Knocking down znfl1s shortened the length of the posterior hindbrain in a similar way of reducing RA signaling in zebrafish embryos and the defective posterior hindbrain was effectively rescued by elevating RA signaling. By performing mutagenesis assays and chromatin immunoprecipitation assays on the promoter of znfl1s, we demonstrated that znfl1s are direct target genes of RA to mediate RA signaling through a functional DR1 RA response element. Taken together, our results showed that Znfl1s are essential for patterning the anterior-posterior axis development of posterior hindbrain by acting as direct target genes of RA signaling.
机译:Ra(视黄酸)信号传导对于图案化脊椎动物的后脑是必不可少的。虽然鉴定了数百种潜在的RA靶标基因,但是通过中介RA信号传导在后脑的图案化前后后侧轴线中发挥作用的霍可基因之外的仍然很大程度上是未知的。以前,我们报告说,ZnFl1s在斑马鱼胚胎中形成后神经外结霉菌的形成。在这里,我们透露ZnFl1s通过在斑马鱼胚胎中维持Ra信号传导的稳态来绘制后脑后轴来扮演关键作用。敲击ZnFl1s以斑马鱼胚胎中的降低Ra信号传导的类似方式缩短了ZnFl1的长度,并通过升高RA信号来有效地振动缺陷的后骨。通过对ZnFl1s的启动子进行诱变测定和染色质免疫沉淀测定,我们证明ZnFl1s是通过功能性DR1 RA响应元件介导RA的RA的直接靶基因。我们的结果表明,ZnFl1s对于通过用作Ra信号传导的直接靶基因来图案化后后轴的前后轴线发育至关重要。

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