首页> 美国卫生研究院文献>The Journal of Clinical Investigation >The folate receptor works in tandem with a probenecid-sensitive carrier in MA104 cells in vitro.
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The folate receptor works in tandem with a probenecid-sensitive carrier in MA104 cells in vitro.

机译:叶酸受体在体外与MA104细胞中的丙磺舒敏感载体协同作用。

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摘要

Previous studies have defined a novel route of internalization for the essential vitamin 5-methyltetrahydrofolate in MA104 cells that begins with binding of the vitamin to the membrane receptor for folate. One of the critical steps in the pathway is the passage of 5-methyltetrahydrofolate through the membrane into the cytoplasm. Utilizing both probenecid and low temperature as selective inhibitors, we have successfully blocked transmembrane movement of the vitamin into the cytoplasm without affecting binding to the receptor or the internalization of the vitamin-receptor complex, which suggests that passage is through an anion carrier. This anion carrier, which mediates inward movement of 5-methyltetrahydrofolate after it dissociates from the receptor, also appears to mediate the efflux of folylmonoglutamate, but not folylpolyglutamate, when the concentration of the former in the cytoplasm is sufficiently high. Since we also found that the synthesis of folylpolyglutamates is regulated in these cells, most likely the intracellular concentration of the vitamin is controlled by regulating the flux of folylmonoglutamate through this carrier.
机译:先前的研究已定义了MA104细胞中必需维生素5-甲基四氢叶酸的内在化新途径,该途径始于维生素与叶酸的膜受体结合。该途径中的关键步骤之一是5-甲基四氢叶酸穿过膜进入细胞质。利用丙磺舒和低温作为选择性抑制剂,我们已经成功地阻止了维生素的跨膜运动进入细胞质,而不会影响与受体的结合或维生素-受体复合物的内在化,这表明通道是通过阴离子载体。当前者在细胞质中的浓度足够高时,这种阴离子载体会介导5-甲基四氢叶酸从受体解离后向内运动,它似乎也能介导叶酰单谷氨酸的流出,而不是叶酰多谷氨酸的流出。由于我们还发现这些细胞中叶酰聚谷氨酸的合成受到调节,因此很可能通过调节叶酰单谷氨酸通过该载体的通量来控制维生素的细胞内浓度。

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