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The vitamin D receptor gene FokI polymorphism: functional impact on the immune system.

机译:维生素D受体基因多态性FokI:对免疫系统功能的影响。

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摘要

1Alpha,25-dihydroxyvitamin D3 (1,25(OH)2D3) has important effects on the growth and function of multiple cell types. These pleiotropic effects of 1,25(OH)2D3 are mediated through binding to the vitamin D receptor (VDR). Several polymorphisms of the human VDR gene have been identified, with the FokI polymorphism resulting in VDR proteins with different structures, a long f-VDR or a shorter F-VDR. The aim of this study was to investigate the functional consequences of the FokI polymorphism in immune cells. In transfection experiments, the presence of the shorter F-VDR resulted in higher NF-kappaB- and NFAT-driven transcription as well as higher IL-12p40 promoter-driven transcription. Marginal differences were observed for AP-1-driven transcription, and no differential effects were observed for transactivation of a classical vitamin D-responsive element. Concordantly, in human monocytes and dendritic cells with a homozygous short FF VDR genotype, expression of IL-12 (mRNA and protein) was higher than in cells with a long ff VDR genotype. Additionally, lymphocytes with a short FF VDR genotype proliferated more strongly in response to phytohemagglutinin. Together, these data provide the first evidence that the VDR FokI polymorphism affects immune cell behavior, with a more active immune system for the short F-VDR, thus possibly playing a role in immune-mediated diseases.
机译:1α,25-dihydroxyvitamin D3 (1,25 (OH) 2 D3)重要的对增长的影响和作用多种细胞类型。1,25 (OH) 2 d3通过绑定到介导维生素D受体(VDR)。人类的VDR基因已确定FokI多态性导致VDR蛋白质不同的结构,长f-VDR或F-VDR短。调查的功能结果在免疫细胞FokI多态性。转染实验,的存在短F-VDR NF-kappaB,导致高NFAT-driven转录以及更高IL-12p40 promoter-driven转录。AP-1-driven差异观察转录和没有差的影响观察transactivation古典的维生素D-responsive元素。人类单核细胞和树突细胞FF VDR基因型纯合子短,表达白介素(信使rna和蛋白质)高于细胞具有悠久ff VDR基因型。淋巴细胞与短FF VDR基因型扩散更强烈的反应植物凝集素。第一个证据表明VDR FokI多态性影响免疫细胞的行为,更加活跃免疫系统的短F-VDR,从而可能扮演一个角色在免疫介导的疾病。

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