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电压钳制条件下人类肾脏钠-二羧酸盐协同转运蛋白的转运特性。

The transport properties of the human renal Na(+)- dicarboxylate cotransporter under voltage-clamp conditions.

作者信息

Yao X, Pajor A M

机构信息

Department of Physiology and Biophysics, University of Texas Medical Branch, Galveston, Texas 77555-0641, USA.

出版信息

Am J Physiol Renal Physiol. 2000 Jul;279(1):F54-64. doi: 10.1152/ajprenal.2000.279.1.F54.

Abstract

The transport properties of the human Na(+)-dicarboxylate cotransporter, (hNaDC-1), expressed in Xenopus laevis oocytes were characterized using the two-electrode voltage clamp technique. Steady-state succinate-evoked inward currents in hNaDC-1 were dependent on the concentrations of succinate and sodium, and on the membrane potential. At -50 mV, the half-saturation constant for succinate (K(0.5)(succinate)) was 1.1 mM and the half-saturation constant for sodium (K(0.5)(sodium)) was 65 mM. The Hill coefficient was 2.3, which is consistent with a transport stoichiometry of 3 Na(+):1 divalent anion substrate. The hNaDC-1 exhibits a high-cation selectivity. Sodium is the preferred cation and other cations, such as lithium, were not able to support transport of succinate. The preferred substrates of hNaDC-1 are fumarate (K(0.5) 1.8 mM) and succinate, followed by methylsuccinate (K(0.5) 2.8 mM), citrate (K(0. 5) 6.8 mM) and alpha-ketoglutarate (K(0.5) 16 mM). The hNaDC-1 may also transport sodium ions through an uncoupled leak pathway, which is sensitive to phloretin inhibition. We propose a transport model for hNaDC-1 in which the binding of three sodium ions is followed by substrate binding.

摘要

利用双电极电压钳技术对非洲爪蟾卵母细胞中表达的人二羧酸钠协同转运蛋白(hNaDC-1)的转运特性进行了表征。hNaDC-1中琥珀酸诱发的稳态内向电流取决于琥珀酸和钠的浓度以及膜电位。在-50 mV时,琥珀酸的半饱和常数(K(0.5)(琥珀酸))为1.1 mM,钠的半饱和常数(K(0.5)(钠))为65 mM。希尔系数为2.3,这与3个Na(+):1个二价阴离子底物的转运化学计量一致。hNaDC-1表现出高阳离子选择性。钠是首选阳离子,其他阳离子,如锂,不能支持琥珀酸的转运。hNaDC-1的首选底物是富马酸(K(0.5) 1.8 mM)和琥珀酸,其次是甲基琥珀酸(K(0.5) 2.8 mM)、柠檬酸(K(0.5) 6.8 mM)和α-酮戊二酸(K(0.5) 16 mM)。hNaDC-1也可能通过对根皮素抑制敏感的非偶联泄漏途径转运钠离子。我们提出了一个hNaDC-1的转运模型,其中三个钠离子结合后是底物结合。

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