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Cotransport of water by the Na+/glucose cotransporter

机译:水的共同运输 Na + /葡萄糖共转运蛋白

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摘要

Water is transported across epithelial membranes in the absence of any hydrostatic or osmotic gradients. A prime example is the small intestine, where 10 liters of water are absorbed each day. Although water absorption is secondary to active solute transport, the coupling mechanism between solute and water flow is not understood. We have tested the hypothesis that water transport is directly linked to solute transport by cotransport proteins such as the brush border Na+/glucose cotransporter. The Na+/glucose cotransporter was expressed in Xenopus oocytes, and the changes in cell volume were measured under sugar-transporting and nontransporting conditions. We demonstrate that 260 water molecules are directly coupled to each sugar molecule transported and estimate that in the human intestine this accounts for 5 liters of water absorption per day. Other animal and plant cotransporters such as the Na+/Cl/γ-aminobutyric acid, Na+/iodide and H+/amino acid transporters are also able to transport water and this suggests that cotransporters play an important role in water homeostasis.
机译:在没有任何静水或渗透梯度的情况下,水通过上皮膜运输。一个典型的例子是小肠,每天吸收10升水。尽管吸水是主动溶质传输的第二要件,但尚不了解溶质与水流之间的耦合机理。我们已经验证了这样的假说,水的转运通过共转运蛋白(如刷边界Na + /葡萄糖共转运蛋白)与溶质转运直接相关。 Na + /葡萄糖共转运蛋白在非洲爪蟾卵母细胞中表达,并在糖转运和非转运条件下测量细胞体积的变化。我们证明了260个水分子与运输的每个糖分子直接偶联,并估计在人的肠道中这每天吸收5升水。其他动植物共转运蛋白,例如Na + / Cl - /γ-氨基丁酸,Na + /碘化物和H + /氨基酸转运蛋白也能够转运水,这表明共转运蛋白 在水的动态平衡中起重要作用。

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