Drug Safety Division, ICMR-National Institute of Nutrition, Jamai Osmania, Hyderabad 500007, Telangana, India.
Nutrients. 2023 Feb 28;15(5):1205. doi: 10.3390/nu15051205.
Previous studies demonstrated that quercetin, a polyphenolic compound, inhibits the transport of iron by down-regulation of ferroportin (FPN1), an iron export protein. We have previously demonstrated that activation of the PI3K signaling pathway by zinc stimulates the intestinal iron uptake and transport by stimulating the expression of iron regulatory protein 2 (IRP2) dependent divalent metal iron transporter 1 (DMT1, apical iron transporter) expression and caudal-related homeobox transcription factor 2 (CDX2) dependent hephaestin (HEPH, basolateral ferroxidase required for iron oxidation) expression, respectively. Since polyphenols are antagonists of the PI3K pathway, we hypothesized that quercetin might inhibit basolateral iron transport via the down-regulation of hephaestin (HEPH). Here in we investigated the effect of quercetin on iron uptake, transport, and expression of iron transporters in intestinal cells. In differentiated Caco-2 cells grown on permeable supports, quercetin inhibited the basolateral iron transport while increasing the iron uptake, possibly due to higher cellular retention. Further, quercetin down-regulated the protein and mRNA expression of HEPH and FPN1 but not that of IRP2 or DMT1. In addition, quercetin also abrogated the zinc-induced Akt, CDX2 phosphorylation, and HEPH expression. Together these results suggest that inhibition of iron transport by quercetin is mediated via the down-regulation of CDX2-dependent HEPH expression via inhibition of the PI3K pathway.
先前的研究表明,类黄酮化合物槲皮素通过下调铁输出蛋白 Ferroportin(FPN1)来抑制铁的转运。我们之前已经证明,锌通过激活 PI3K 信号通路刺激铁调节蛋白 2(IRP2)依赖性二价金属铁转运蛋白 1(DMT1,顶端铁转运蛋白)表达和尾相关同源盒转录因子 2(CDX2)依赖性亚铁氧化酶 hephaestin(HEPH,基底外侧铁氧化所需)表达,从而刺激肠道铁吸收和转运。由于多酚类物质是 PI3K 途径的拮抗剂,我们假设槲皮素可能通过下调 hephaestin(HEPH)来抑制基底外侧铁转运。在这里,我们研究了槲皮素对肠细胞中铁摄取、转运和铁转运蛋白表达的影响。在可渗透支持物上生长的分化的 Caco-2 细胞中,槲皮素抑制基底外侧铁转运,同时增加铁摄取,可能是由于细胞内保留增加。此外,槲皮素下调了 HEPH 和 FPN1 的蛋白和 mRNA 表达,但不影响 IRP2 或 DMT1 的表达。此外,槲皮素还消除了锌诱导的 Akt、CDX2 磷酸化和 HEPH 表达。这些结果表明,槲皮素通过抑制 PI3K 途径抑制 CDX2 依赖性 HEPH 表达来介导铁转运的抑制。