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首页> 外文期刊>The Journal of Nutrition: Official Organ of the American Institute of Nutrition >Transcriptional Regulation of Interleukin-2 Gene Expression Is Impaired by Copper Deficiency in Jurkat Human T Lymphocytes
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Transcriptional Regulation of Interleukin-2 Gene Expression Is Impaired by Copper Deficiency in Jurkat Human T Lymphocytes

机译:Jurkat人T淋巴细胞铜缺乏会损害白细胞介素2基因表达的转录调控。

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Copper deficiency reduces secretion of the cytokine interleukin-2 (IL-2) by activated rodent splenocytes, human peripheral blood mononuclear cells and Jurkat cells, a human T lymphocyte cell line. Previous studies showed that low Cu status also decreased the level of IL-2 mRNA in activated Jurkat cells by 50%. Synthesis of this cytokine is regulated by alterations in transcription of the IL-2 gene and the stability of IL-2 mRNA. To determine if Cu status influenced promoter activity of the IL-2 gene, Jurkat cells were transfected with a luciferase reporter gene construct containing the entire 300 bp human IL-2 promoter/enhancer sequence. Cu deficiency was induced by incubating stably transfected cells with the Cu chelator 2,3,2-tetraamine for 35 h prior to activating cells with phytohemagglutinin-P and phorbol myristate acetate. Luciferase activity in lysates of Cu-deficient cells was approximately 50% lower in several multiclonal and clonal cell lines of stably transfected cells than in replicate cultures that were not exposed to chelator. The relative levels of endogenous IL-2 bioactivity and luciferase activity were highly correlated in the transfected cell lines. The chelator-mediated reduction in reporter gene activity was dose-dependent at levels of 5–40 μmol 2,3,2-tetraamine/L. The addition of a slight molar excess of Cu, but not Zn or Fe, to medium containing 2,3,2-tetraamine prevented the decline in luciferase activity. IL-2 mRNA stability in parental Jurkat cells was independent of Cu status. These data indicate that decreased cellular Cu attenuates IL-2 synthesis in T lymphocytes by inhibiting transcription of the IL-2 gene.
机译:铜缺乏减少了活化的啮齿动物脾细胞,人外周血单核细胞和人T淋巴细胞细胞系Jurkat细胞对细胞因子白介素2(IL-2)的分泌。先前的研究表明,低铜状态也会使激活的Jurkat细胞中IL-2 mRNA的水平降低50%。该细胞因子的合成受IL-2基因转录和IL-2 mRNA稳定性的调节。为了确定Cu状态是否影响IL-2基因的启动子活性,用包含完整的300bp人IL-2启动子/增强子序列的荧光素酶报道基因构建体转染Jurkat细胞。在用植物血凝素-P和佛波肉豆蔻酸酯乙酸酯活化细胞之前,将稳定转染的细胞与Cu螯合剂2,3,2-四胺一起孵育35小时,诱导铜缺乏。与未暴露于螯合剂的复制培养物中相比,在稳定转染的细胞的几种多克隆和克隆细胞系中,缺乏铜的细胞的裂解物中的荧光素酶活性降低了约50%。内源性IL-2生物活性和荧光素酶活性的相对水平在转染的细胞系中高度相关。螯合剂介导的报告基因活性降低是剂量依赖性的,浓度为5-40μmol2,3,2-四胺/ L。向含有2,3,2-四胺的培养基中加入略微摩尔过量的Cu,但不添加Zn或Fe,可防止荧光素酶活性下降。亲代Jurkat细胞中IL-2 mRNA的稳定性与Cu状态无关。这些数据表明减少的细胞铜通过抑制IL-2基因的转录而减弱T淋巴细胞中IL-2的合成。

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