首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >Dickkopf homolog 1, a Wnt signaling antagonist, is transcriptionally up-regulated via an ATF4-independent and MAPK/ERK-dependent pathway following amino acid deprivation.
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Dickkopf homolog 1, a Wnt signaling antagonist, is transcriptionally up-regulated via an ATF4-independent and MAPK/ERK-dependent pathway following amino acid deprivation.

机译:Dickkopf同系物1(一种Wnt信号拮抗剂)在氨基酸剥夺后通过ATF4独立和MAPK / ERK依赖性途径在转录上调。

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摘要

Amino acid response (AAR) pathway is activated when cells are deprived of amino acids. In the present study, using the human colon cancer cell line SW480, we observed that DKK1, an antagonist of the Wnt pathway, was significantly induced at the mRNA level after the removal of amino acids from the medium. Addition of the amino alcohol histidinol, which prevents the formation of histidinyl-tRNA(His), also increased DKK1 mRNA to a level similar to that observed when cells were deprived of all amino acids. Transcriptional activity and stability of DKK1 mRNA were both increased in the amino acid-deprived condition. The induction of DKK1 gene expression was confirmed by the increased immunofluorescent staining of the DKK1 protein in the amino acid deprived condition. Although chromatin immunoprecipitation assays showed increased RNA Polymerase II binding at the DKK1 promoter in amino acid-limited conditions, ATF4 binding to the promoter is absent. Luciferase reporter assays did not detect any functional AARE within the DKK1 gene structure. Knockdown of ATF4 by siRNA did not affect the increase of DKK1 mRNA during amino acid limitation. Inhibition of ERK phosphorylation abolished the induction of DKK1. Our study revealed that DKK1 is a novel target gene in the response to amino acid deficiency and that the expression of DKK1 is up-regulated through an ATF4-independent and an ERK-dependent pathway.
机译:当细胞被剥夺氨基酸时,氨基酸反应(AAR)途径被激活。在本研究中,我们使用人类结肠癌细胞系SW480观察到,从培养基中去除氨基酸后,Wnt途径的拮抗剂DKK1在mRNA水平上得到了显着诱导。添加阻止组氨酸-tRNA(His)形成的氨基醇组蛋白醇也可使DKK1 mRNA的水平升高至与细胞被剥夺所有氨基酸的水平相似的水平。在缺乏氨基酸的条件下,DKK1 mRNA的转录活性和稳定性均增加。 DKK1基因表达的诱导被氨基酸缺失条件下DKK1蛋白的免疫荧光染色增加所证实。尽管染色质免疫沉淀试验显示在氨基酸限制的条件下DKK1启动子上RNA聚合酶II的结合增加,但ATF4与启动子的结合却不存在。荧光素酶报告基因检测未检测到DKK1基因结构内的任何功能性AARE。 siRNA抑制ATF4不会影响氨基酸限制期间DKK1 mRNA的增加。抑制ERK磷酸化消除了DKK1的诱导。我们的研究表明,DKK1是一种对氨基酸缺乏症应答的新型靶基因,并且DKK1的表达通过独立于ATF4和ERK的途径上调。

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