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Zinc supplementation of young men alters metallothionein, zinc transporter, and cytokine gene expression in leukocyte populations

机译:年轻人补充锌会改变白细胞群体中的金属硫蛋白,锌转运蛋白和细胞因子基因表达

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摘要

An effective measure to assess zinc status of humans has remained elusive, in contrast to iron, where a number of indicators of metabolism/function are available. Using monocytes, T lymphocytes, and granulocytes isolated by magnetic sorting and dried blood spots (DBS) derived from 50 μl of peripheral blood, we evaluated the response of metallothionein (MT), zinc transporter, and cytokine genes to a modest (15 mg of Zn per day) dietary zinc supplement in human subjects. Transcript abundance was measured by quantitative real-time RT-PCR (QRT-PCR). Zinc supplementation increased MT mRNA abundance by up to 2-fold in RNA from leukocyte subsets, and 4-fold in RNA from DBS. Transcript levels for the zinc transporter genes ZnT1 and Zip3 were increased and decreased, respectively, by zinc supplementation. Expression of the ZnT and Zip genes among leukocyte subsets differ by up to 270-fold. Monocytes and granulocytes from supplemented subjects were activated by LPS, whereas T lymphocytes were activated by mimicking antigen presentation. With zinc consumption, TNF-α and IL-1β expression was greater in activated monocytes and granulocytes, and IFN-γ mRNA levels were higher in activated T lymphocytes. These studies show that QRT-PCR is a tool to reliably measure transcript abundance for nutritionally responsive genes in human subjects, and that a small sample of whole dried blood, when appropriately collected, can be used as the source of total RNA for QRT-PCR analysis. The results obtained also show that zinc supplementation of human subjects programs specific leukocytic subsets to show enhanced cytokine expression upon activation by stimulators of immunity.
机译:与铁相比,评估人体锌状态的有效措施仍然难以捉摸,铁具有多种代谢/功能指标。使用通过磁选分离的单核细胞,T淋巴细胞和粒细胞以及来源于50μl外周血的干血斑(DBS),我们评估了金属硫蛋白(MT),锌转运蛋白和细胞因子基因对中度(15 mg每天锌)人类受试者的膳食锌补充剂。通过定量实时RT-PCR(QRT-PCR)测量转录本丰度。补充锌可使白细胞亚群的RNA的MT mRNA丰度提高2倍,而来自DBS的RNA的MT丰度提高4倍。锌转运蛋白ZnT1和Zip3的转录水平通过补锌而分别增加和减少。 ZnT和Zip基因在白细胞亚群之间的表达差异高达270倍。来自补充受试者的单核细胞和粒细胞被LPS激活,而T淋巴细胞通过模拟抗原呈递被激活。随着锌的消耗,活化的单核细胞和粒细胞的TNF-α和IL-1β表达更高,而活化的T淋巴细胞的IFN-γmRNA水平更高。这些研究表明,QRT-PCR是一种可以可靠地测量人类受试者营养应答基因的转录本丰度的工具,并且经过适当收集的一小部分全干血可以用作QRT-PCR的总RNA来源。分析。所获得的结果还表明,补充人类受试者的锌可对特定的白细胞亚群进行编程,以在免疫刺激剂激活后显示增强的细胞因子表达。

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