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蜥蜴十二指肠黏膜中电生性非钠依赖型L-丙氨酸转运的膜机制

Membrane mechanisms for electrogenic Na(+)-independent L-alanine transport in the lizard duodenal mucosa.

作者信息

Díaz M, Medina V, Gómez T, Lorenzo A

机构信息

Laboratorio de Fisiología Animal, Departamento de Biología Animal, Universidad de La Laguna, 38206 Tenerife, Spain.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2000 Sep;279(3):R925-35. doi: 10.1152/ajpregu.2000.279.3.R925.

Abstract

The active Na(+)-independent transport of L-alanine across the duodenal mucosa of the lizard Gallotia galloti was studied in Ussing-type chambers using a computer-controlled voltage clamp. Addition of L-alanine to the Na(+)-free bathing solutions resulted in a significant L-alanine absorption (J(net)) that was paralleled by an increase in transepithelial short-circuit current (I(sc)) and potential difference (PD) without apparent changes in the tissue conductance. The concentration dependence of J(net), PD, and I(sc) displayed Michaelis-Menten kinetics. L-alanine-induced electrical changes were completely inhibited by external alkaline pH or by the H(+)-ionophore carbonyl cyanide m-chlorophenyl-hydrazone in the bathing solution. The alanine-induced electrogenicity was dependent on the presence of extracellular K(+) and could be blocked by serosal Ba(2+) or mucosal orthovanadate. These results suggest the existence of an H(+)-coupled L-alanine cotransport at the apical membrane of enterocytes. The favorable H(+) driving force is likely to be maintained by an apical vanadate-sensitive H(+)-K(+)-ATPase, allowing the extrusion of H(+) in an exchange with K(+). Potassium exit through a basolateral barium-sensitive conductance provides the key step for the electrogenicity of L-alanine absorption.

摘要

利用计算机控制的电压钳,在尤斯灌流室中研究了加那利岛蜥蜴(Gallotia galloti)十二指肠黏膜对L-丙氨酸的主动非钠依赖性转运。向无钠的浴液中添加L-丙氨酸会导致显著的L-丙氨酸吸收(净通量J),同时跨上皮短路电流(Isc)和电位差(PD)增加,而组织电导无明显变化。净通量J、PD和Isc的浓度依赖性呈现米氏动力学。外部碱性pH值或浴液中的H⁺离子载体羰基氰化物间氯苯腙可完全抑制L-丙氨酸诱导的电变化。丙氨酸诱导的生电性依赖于细胞外K⁺的存在,并且可被浆膜侧的Ba²⁺或黏膜侧的原钒酸盐阻断。这些结果表明在肠上皮细胞顶端膜存在一种H⁺偶联的L-丙氨酸共转运体。有利的H⁺驱动力可能由顶端的钒酸盐敏感的H⁺-K⁺-ATP酶维持,允许H⁺与K⁺交换而被排出。通过基底外侧对钡敏感的电导的钾外流为L-丙氨酸吸收的生电性提供了关键步骤。

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