首页> 外文期刊>International journal of biological sciences >A Novel Zinc Finger Protein 219-like (ZNF219L) is Involved in the Regulation of Collagen Type 2 Alpha 1a (col2a1a) Gene Expression in Zebrafish Notochord
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A Novel Zinc Finger Protein 219-like (ZNF219L) is Involved in the Regulation of Collagen Type 2 Alpha 1a (col2a1a) Gene Expression in Zebrafish Notochord

机译:新型锌指蛋白219样(ZNF219L)参与调节斑马鱼Notochord中的胶原2型α1a(col2a1a)基因表达。

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The notochord is required for body plan patterning in vertebrates, and defects in notochord development during embryogenesis can lead to diseases affecting the adult. It is therefore important to elucidate the gene regulatory mechanism underlying notochord formation. In this study, we cloned the zebrafish zinc finger 219-like (ZNF219L) based on mammalian ZNF219, which contains nine C2H2-type zinc finger domains. Through whole-mount in situ hybridization, we found that znf219L mRNA is mainly expressed in the zebrafish midbrain-hindbrain boundary, hindbrain, and notochord during development. The znf219L morpholino knockdown caused partial abnormal notochord phenotype and reduced expression of endogenous col2a1a in the notochord specifically. In addition, ZNF219L could recognize binding sites with GGGGG motifs and trigger augmented activity of the col2a1a promoter in a luciferase assay. Furthermore, in vitro binding experiments revealed that ZNF219L recognizes the GGGGG motifs in the promoter region of the zebrafish col2a1a gene through its sixth and ninth zinc finger domains. Taken together, our results reveal that ZNF219L is involved in regulating the expression of col2a1a in zebrafish notochord specifically.
机译:脊索动物是脊椎动物体内计划构图所必需的,胚胎发生过程中脊索动物发育中的缺陷可能导致疾病影响成年。因此,阐明脊索形成的基因调控机制很重要。在这项研究中,我们基于包含9个C2H2型锌指结构域的哺乳动物ZNF219克隆了斑马鱼锌指219型(ZNF219L)。通过整个原位杂交,我们发现znf219L mRNA在发育过程中主要在斑马鱼中脑-后脑边界,后脑和脊索中表达。 znf219L吗啉代基因敲低导致部分脊索表型异常,并特异性降低了脊索中内源性col2a1a的表达。另外,在荧光素酶测定中,ZNF219L可以识别具有GGGGG图案的结合位点并触发col2a1a启动子的增强活性。此外,体外结合实验显示ZNF219L通过其第六和第九个锌指结构域识别斑马鱼col2a1a基因启动子区域中的GGGGG基序。两者合计,我们的结果表明ZNF219L参与调节斑马鱼脊索中col2a1a的表达。

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