Department of Pharmacy, Kyoto University Hospital, Faculty of Medicine, Sakyo-ku, Kyoto 606-8507, Japan.
J Nutr. 2010 Jul;140(7):1220-6. doi: 10.3945/jn.110.122911. Epub 2010 May 12.
We isolated cDNA coding a new human riboflavin transporter (hRFT)3, which exhibits 86.7 and 44.1% amino acid identity with hRFT1 and hRFT2, respectively. It was predicted to have 10 putative membrane-spanning domains. The functional characteristics of hRFT3 were examined and compared with those of its isoforms, hRFT1 and hRFT2. Real-time PCR revealed that hRFT3 mRNA was strongly expressed in the brain and salivary gland. hRFT1 mRNA was strongly expressed in the placenta and small intestine, whereas hRFT2 mRNA was most abundantly expressed in the testis and strongly in the small intestine and prostate. hRFT-mediated uptake of [3H]riboflavin was evaluated using human embryonic kidney 293 cells transiently transfected with the cDNA coding each hRFT. The apparent Michaelis-Menten constants of hRFT1, hRFT2, and hRFT3 for riboflavin were 1.38, 0.98, and 0.33 micromol/L, respectively. The hRFT-mediated [3H]riboflavin uptake was independent of extracellular Na+ and Cl(-). Specific uptake of [3H]riboflavin by hRFT2, but not hRFT1 and hRFT3, decreased as extracellular pH was changed from 5.4 to 8.4. The substrate specificities of the hRFT family were similar. hRFT-mediated uptake of [3H]riboflavin was inhibited by some riboflavin analogs, but not D-ribose, organic ions, or other vitamins. The newly isolated hRFT3 may play an important role in brain riboflavin homeostasis. Its amino acid sequence and functional characteristics are similar to those of hRFT1, but not hRFT2.
我们分离出编码新的人类核黄素转运蛋白 (hRFT)3 的 cDNA,它与 hRFT1 和 hRFT2 分别具有 86.7%和 44.1%的氨基酸同一性。它被预测具有 10 个潜在的跨膜结构域。研究了 hRFT3 的功能特征,并与它的同工型 hRFT1 和 hRFT2 进行了比较。实时 PCR 显示 hRFT3 mRNA 在大脑和唾液腺中强烈表达。hRFT1 mRNA 在胎盘和小肠中强烈表达,而 hRFT2 mRNA 在睾丸中最为丰富,并在小肠和前列腺中强烈表达。使用瞬时转染 cDNA 的人胚肾 293 细胞评估 hRFT 介导的 [3H]核黄素摄取。hRFT1、hRFT2 和 hRFT3 对核黄素的表观米氏常数分别为 1.38、0.98 和 0.33 μmol/L。hRFT 介导的 [3H]核黄素摄取不受细胞外 Na+和 Cl-的影响。[3H]核黄素的 hRFT2 特异性摄取,而不是 hRFT1 和 hRFT3,随着细胞外 pH 从 5.4 变为 8.4 而减少。hRFT 家族的底物特异性相似。[3H]核黄素的 hRFT 介导摄取被一些核黄素类似物抑制,但不受 D-核糖、有机离子或其他维生素的影响。新分离的 hRFT3 可能在大脑核黄素稳态中发挥重要作用。它的氨基酸序列和功能特征与 hRFT1 相似,但与 hRFT2 不同。