Department of Molecular Biology, Institute of Genetics and Animal Biotechnology, Polish Academy of Sciences, 05-552 Jastrzębiec, Poland.
Cells. 2021 Aug 31;10(9):2259. doi: 10.3390/cells10092259.
The critical function of ferroportin (Fpn) in maintaining iron homeostasis requires complex and multilevel control of its expression. Besides iron-dependent cellular and systemic control of Fpn expression, other metals also seem to be involved in regulating the gene. Here, we found that copper loading significantly enhanced transcription in an Nrf2-dependent manner in primary bone-marrow-derived macrophages (BMDMs). However, prolonged copper loading resulted in decreased Fpn protein abundance. Moreover, CuCl treatment induced Fpn expression in RAW 264.7 macrophages at both the mRNA and protein level. These data suggest that cell-type-specific regulations have an impact on Fpn protein stability after copper loading. Transcriptional suppression of Fpn after lipopolysaccharide (LPS) treatment contributes to increased iron storage inside macrophages and may result in anemia of inflammation. Here, we observed that in both primary BMDMs and RAW 264.7 macrophages, LPS treatment significantly decreased Fpn mRNA levels, but concomitant CuCl stimulation counteracted the transcriptional suppression of Fpn and restored its expression to the control level. Overall, we show that copper loading significantly enhances transcription in macrophages, while Fpn protein abundance in response to CuCl treatment, depending on macrophage type and factors specific to the macrophage population, can influence Fpn regulation in response to copper loading.
铁蛋白(Fpn)在维持铁稳态方面的关键功能需要其表达的复杂和多层次控制。除了铁依赖性的细胞和系统对 Fpn 表达的控制之外,其他金属似乎也参与调节该基因。在这里,我们发现铜负荷以 Nrf2 依赖的方式显著增强了原代骨髓来源巨噬细胞(BMDM)中的转录。然而,长期铜负荷导致 Fpn 蛋白丰度降低。此外,CuCl 处理在 RAW 264.7 巨噬细胞中诱导 Fpn 在 mRNA 和蛋白水平上的表达。这些数据表明,细胞类型特异性调节对铜负荷后 Fpn 蛋白稳定性有影响。脂多糖(LPS)处理后 Fpn 的转录抑制有助于巨噬细胞内铁的储存增加,可能导致炎症性贫血。在这里,我们观察到 LPS 处理在原代 BMDM 和 RAW 264.7 巨噬细胞中均显著降低了 Fpn mRNA 水平,但同时 CuCl 刺激抵消了 Fpn 的转录抑制,并将其表达恢复到对照水平。总的来说,我们表明铜负荷显著增强了巨噬细胞中的转录,而 Fpn 蛋白丰度对 CuCl 处理的反应,取决于巨噬细胞类型和巨噬细胞群体特有的因素,可能会影响对铜负荷的 Fpn 调节。