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首页> 外文期刊>BMC Developmental Biology >Left-right axis asymmetry determining human Cryptic gene is transcriptionally repressed by Snail
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Left-right axis asymmetry determining human Cryptic gene is transcriptionally repressed by Snail

机译:Snail在转录方面抑制了确定人类密码基因的左右轴不对称性

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Background Establishment of the left-right axis is important for positioning organs asymmetrically in the developing vertebrate-embryo. A number of factors like maternally deposited molecules have emerged essential in initiating the specification of the axis; the downstream events, however, are regulated by signal-transduction and gene-expression changes identifying which remains a crucial challenge. The EGF-CFC family member Cryptic, that functions as a co-receptor for some TGF-beta ligands, is developmentally expressed in higher mammals and mutations in the gene cause loss or change in left-right axis asymmetry. Despite the strong phenotype, no transcriptional-regulator of this gene is known till date. Results Using promoter-analyses tools, we found strong evidence that the developmentally essential transcription factor Snail binds to the human Cryptic-promoter. We cloned the promoter-region of human Cryptic in a reporter gene and observed decreased Cryptic-promoter activation upon increasing Snail expression. Further, the expression of Cryptic is down-regulated upon exogenous Snail expression, validating the reporter assays and the previously identified role of Snail as a transcriptional repressor. Finally, we demonstrate using gel-shift assay that Snail in nuclear extract of PANC1 cells interacts with the promoter-construct bearing putative Snail binding sites and confirm this finding using chromatin immunoprecipitation assay. Conclusions Snail represses the expression of human Cryptic and therefore, might affect the signaling via Nodal that has previously been demonstrated to specify the left-right axis using the EGF-CFC co-receptors.
机译:背景技术建立左右轴对于在发育中的脊椎动物胚胎中不对称定位器官很重要。许多因素,例如母体沉积的分子,已经成为启动轴规范的必不可少的因素。然而,下游事件受信号转导和基因表达变化的调控,确定哪些仍然是关键挑战。 EGF-CFC家族成员Cryptic作为某些TGF-β配体的共受体,在高等哺乳动物中发育表达,该基因的突变导致左右轴不对称性丢失或改变。尽管有很强的表型,但迄今为止尚不知道该基因的转录调节子。结果使用启动子分析工具,我们发现了强有力的证据,表明发育必不可少的转录因子Snail与人的密码子启动子结合。我们在一个报告基因中克隆了人类隐匿的启动子区域,并观察到随着Snail表达的增加,隐匿的启动子激活减少。此外,在外源性Snail表达后,Cryptic的表达下调,从而证实了报告基因检测以及Snail作为转录阻遏物的先前确定的作用。最后,我们证明了使用凝胶移位测定法,表明PANC1细胞核提取物中的Snail与带有推定的Snail结合位点的启动子-构建体相互作用,并使用染色质免疫沉淀测定法证实了这一发现。结论Snail抑制了人类Cryptic的表达,因此可能会影响通过Nodal的信号传导,该信号先前已被证明可以使用EGF-CFC共受体指定左右轴。

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