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Polarized expression of members of the solute carrier SLC19A gene family of water-soluble multivitamin transporters: implications for physiological function.

机译:水溶性多种维生素转运蛋白溶质载体SLC19A基因家族成员的极化表达:对生理功能的影响。

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摘要

Humans lack biochemical pathways for the synthesis of the micro-nutrients thiamine and folate. Cellular requirements are met through membrane transport activity, which is mediated by proteins of the SLC19A gene family. By using live-cell confocal imaging methods to resolve the localization of all SLC19A family members, we show that the two human thiamine transporters are differentially targeted in polarized cells, establishing a vectorial transport system. Such polarization decreases functional redundancy between transporter isoforms and allows for independent regulation of thiamine import and export pathways in cells.
机译:人类缺乏微量元素硫胺素和叶酸合成的生化途径。通过SLC19A基因家族蛋白介导的膜转运活性可以满足细胞的需求。通过使用活细胞共聚焦成像方法来解决所有SLC19A家族成员的定位,我们显示了两个人类硫胺素转运蛋白在极化细胞中的差异靶向,建立了一个矢量转运系统。这种极化减少了转运蛋白同工型之间的功能冗余,并允许硫胺素进出口通道在细胞中的独立调节。

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