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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Involvement of riboflavin transporter RFVT2/Slc52a2 in hepatic homeostasis of riboflavin in mice
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Involvement of riboflavin transporter RFVT2/Slc52a2 in hepatic homeostasis of riboflavin in mice

机译:核黄素转运蛋白RFVT2 / Slc52a2参与小鼠核黄素肝稳态的过程

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摘要

Riboflavin (vitamin B2) acts as an intermediary during various biochemical oxidation-reduction reactions in the liver. Hepatic riboflavin homeostasis is suggested to be maintained through its transporter(s). Riboflavin transporters, RFVT2/Slc52a2 and RFVT3/Slc52a3, have been identified in rodents. However, the role of each RFVT in the hepatic homeostasis of riboflavin has not yet been fully clarified. In this study, we assessed the contribution of each RFVT to riboflavin uptake into the liver using in vitro and in vivo studies. The uptake of riboflavin by mouse primary hepatocytes increased in a time-dependent and a concentration-dependent manner. Riboflavin transport was independent of extracellular Na+. However, the uptake decreased slightly along with the extracellular pH increases. Real-time PCR analysis revealed that the mRNA level of Slc52α2, or coding for mouse (m)RFVT2, in the mouse liver was 10 times higher than that of Slc52α3 (coding for mRFVT3). The uptake of riboflavin at pH 7.4 by primary hepatocytes was significantly decreased by the transfection of Slc52α2-small interfering RNA (siRNA), but not Slc52α3-siRNA. Furthermore, we also confirmed the contribution of riboflavin transporters in vivo. The riboflavin concentrations in plasma, but not in the liver, were significantly decreased in mice fed on a riboflavin-deficient diet for 8 weeks. The expression of Slc52α2 mRNA was significantly upregulated by riboflavin deprivation. These results strongly suggest that mRFVT2 was involved in hepatic riboflavin homeostasis.
机译:核黄素(维生素B2)在肝脏中各种生化氧化还原反应中起中介作用。建议通过其转运蛋白维持肝核黄素稳态。核黄素转运蛋白RFVT2 / Slc52a2和RFVT3 / Slc52a3已在啮齿动物中鉴定。但是,每种RFVT在核黄素肝稳态中的作用尚未完全阐明。在这项研究中,我们使用体外和体内研究评估了每种RFVT对核黄素摄取进入肝脏的贡献。小鼠原代肝细胞对核黄素的摄取以时间依赖性和浓度依赖性方式增加。核黄素转运独立于细胞外Na +。但是,摄取量随细胞外pH值的升高而略有下降。实时PCR分析显示,小鼠肝脏中Slc52α2或编码小鼠(m)RFVT2的mRNA水平比Slc52α3(编码mRFVT3)的mRNA高10倍。通过转染Slc52α2-小干扰RNA(siRNA)而不是Slc52α3-siRNA,原代肝细胞在pH 7.4时摄取核黄素的能力明显降低。此外,我们还证实了核黄素转运蛋白在体内的贡献。饲喂缺乏核黄素饮食8周的小鼠血浆中而非肝中的核黄素浓度显着降低。核黄素剥夺显着上调Slc52α2mRNA的表达。这些结果强烈表明mRFVT2参与了肝核黄素稳态。

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