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N1-甲基烟酰胺在兔肾刷状缘膜囊泡中的转运

Transport of N1-methylnicotinamide across brush border membrane vesicles from rabbit kidney.

作者信息

Wright S H

出版信息

Am J Physiol. 1985 Dec;249(6 Pt 2):F903-11. doi: 10.1152/ajprenal.1985.249.6.F903.

Abstract

A preparation of isolated brush border membranes from the rabbit renal cortex was used to examine the characteristics of N1-methylnicotinamide (NMN) transport in the kidney. Transport was independent of the presence of Na+ under Na+ equilibrium conditions. However, outwardly directed Na+ gradients stimulated NMN uptake, whereas inwardly directed Na+ gradients inhibited NMN uptake. Transport appeared to involve two parallel processes: one saturable with a Jmax of 5 nmol X mg protein-1 X min-1 and an apparent Kt of 0.6 mM, and a second that behaved like passive diffusion. Countertransport of NMN was observed when vesicles were preloaded with either NMN or another organic cation, tetraethylammonium (TEA). TEA and several structural analogues, as well as a wide variety of other organic cations and bases, were effective inhibitors of NMN uptake, though nicotinamide and p-aminohippuric acid did not interact with the uptake process. Outwardly directed proton gradients (pH 6.0 in, 7.6 out) stimulated transport, suggesting that NMN uptake may involve a countertransport of H+. The electrical potential difference across the vesicle membrane was manipulated using gradients of the permeant organic ion thiocyanate (SCN-); an outwardly directed gradient of SCN- (i.e., a depolarizing condition) stimulated uptake and produced a transient accumulation of NMN above that noted at equilibrium, whereas an inwardly directed SCN- gradient inhibited uptake of NMN. The data can be explained by postulating the presence of an electrogenic NMN+-H+ antiporter in the rabbit luminal membrane that could play a role in organic cation secretion.

摘要

利用从兔肾皮质分离得到的刷状缘膜制剂来研究肾脏中N1-甲基烟酰胺(NMN)转运的特性。在Na+平衡条件下,转运与Na+的存在无关。然而,外向的Na+梯度刺激NMN摄取,而内向的Na+梯度则抑制NMN摄取。转运似乎涉及两个平行过程:一个是可饱和的,Jmax为5 nmol·mg蛋白-1·min-1,表观Kt为0.6 mM,另一个表现为被动扩散。当囊泡预先装载NMN或另一种有机阳离子四乙铵(TEA)时,观察到NMN的反向转运。TEA及其几种结构类似物,以及多种其他有机阳离子和碱,都是NMN摄取的有效抑制剂,尽管烟酰胺和对氨基马尿酸不与摄取过程相互作用。外向的质子梯度(内部pH 6.0,外部pH 7.6)刺激转运,表明NMN摄取可能涉及H+的反向转运。利用渗透性有机离子硫氰酸盐(SCN-)的梯度来操纵囊泡膜两侧的电位差;外向的SCN-梯度(即去极化条件)刺激摄取,并使NMN在平衡时出现短暂的积累,而内向的SCN-梯度则抑制NMN的摄取。这些数据可以通过假设兔腔膜中存在一种电生性的NMN+-H+反向转运体来解释,该转运体可能在有机阳离子分泌中起作用。

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