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肠道糖转运:钠离子梯度提供了所有能量吗?

Intestinal sugar transport: does the Na+ gradient provide all the energy?

作者信息

Baker R D

出版信息

Am J Physiol. 1986 Apr;250(4 Pt 1):G448-54. doi: 10.1152/ajpgi.1986.250.4.G448.

Abstract

It has not yet been established that the energy released from the Na+ gradient during Na+-sugar cotransport by small intestine is sufficient, by itself, to drive uphill sugar transport under conditions in which other sources of energy are available and in which sugar is being vigorously transported. This work attempts to test the thermodynamic sufficiency of the Na+ mechanism under such conditions using hamster jejunum in vitro. From data on tissue uptake of D-galactose and unstirred layer considerations, the concentration ratio for galactose across the apical membrane during mucosal-to-serosal galactose transport was estimated to be at least 50 when concentration in the bulk mucosal solution was 2.2 mM. This estimate and reasonable assumptions regarding intracellular Na+ activity and apical membrane potential were used to calculate the minimum physiological coupling ratio (i.e., the ratio of coupled net fluxes of Na+ and galactose) required if all the energy necessary for galactose transport is transferred from Na+. The minimum physiological coupling ratio required was roughly 1.4. An estimate based on the ratio of transepithelial chord permeabilities to galactose, instead of the apical concentration ratio, would be higher. The measured physiological coupling ratio (0.4) was considerably less than that required. For reasons discussed, this result should be interpreted with caution. It can be concluded that the issue of energetic adequacy is not yet settled.

摘要

目前尚未确定,在存在其他能量来源且糖类正在被大量转运的情况下,小肠中Na⁺-糖共转运过程中从Na⁺梯度释放的能量自身是否足以驱动糖类的逆浓度梯度转运。这项工作试图利用体外培养的仓鼠空肠,在上述条件下测试Na⁺机制的热力学充足性。根据D-半乳糖的组织摄取数据以及对静止层的考虑,当黏膜溶液中D-半乳糖的浓度为2.2 mM时,在从黏膜到浆膜的半乳糖转运过程中,半乳糖跨顶端膜的浓度比估计至少为50。利用这一估计值以及关于细胞内Na⁺活性和顶端膜电位的合理假设,计算出如果半乳糖转运所需的所有能量都从Na⁺转移,所需的最小生理偶联比(即Na⁺和半乳糖的偶联净通量之比)。所需的最小生理偶联比约为1.4。基于跨上皮弦对半乳糖的通透性之比而非顶端浓度比的估计值会更高。测得的生理偶联比(0.4)远低于所需值。出于所讨论的原因,对这一结果的解释应谨慎。可以得出结论,能量充足性的问题尚未解决。

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