Guggino S E, Martin G J, Aronson P S
Am J Physiol. 1983 Jun;244(6):F612-21. doi: 10.1152/ajprenal.1983.244.6.F612.
The transport of various organic anions via the pathway that mediates the exchange of urate or p-aminohippurate (PAH) for OH- or Cl- in dog renal microvillus membrane vesicles was investigated. The pH gradient-stimulated uptakes of tracer urate and PAH were significantly inhibited by 5 mM PAH, n-valerate, lactate, beta-hydroxybutyrate, pyruvate, acetoacetate, maleate, succinate, alpha-ketoglutarate, oxaloacetate, and cis-aconitate but not by 5 mM acetate, malate, oxalate, or citrate. the pH dependence of inhibition suggested that it was in their monovalent forms that these acid anions interacted with the urate exchange pathway. Outwardly directed gradients of succinate, lactate, and PAH stimulated uphill urate accumulation. Imposition of an inside-alkaline pH gradient stimulated the uphill accumulation of lactate and succinate. Na+ cotransport pathways for lactate and succinate were also present. In the presence of an inwardly directed Na+ gradient, lactate stimulated the uphill accumulation of urate, indicating that the pathways mediating Na+-lactate cotransport and lactate-urate exchange coexisted in at least some membrane vesicles. We conclude that the anion exchange pathway for urate in dog renal microvillus membrane vesicles has affinity for additional organic anions and can function in multiple exchange modes. Exchange of luminal urate or Cl- for intracellular organic anions or OH- is a possible mechanism for effecting uphill anion reabsorption in the proximal tubule.
研究了狗肾微绒毛膜囊泡中各种有机阴离子通过介导尿酸盐或对氨基马尿酸(PAH)与OH-或Cl-交换的途径的转运情况。5 mM的PAH、正戊酸盐、乳酸盐、β-羟基丁酸盐、丙酮酸盐、乙酰乙酸盐、马来酸盐、琥珀酸盐、α-酮戊二酸盐、草酰乙酸盐和顺乌头酸盐可显著抑制pH梯度刺激的示踪尿酸盐和PAH的摄取,但5 mM的乙酸盐、苹果酸盐、草酸盐或柠檬酸盐则无此作用。抑制作用的pH依赖性表明,这些酸性阴离子是以单价形式与尿酸盐交换途径相互作用的。琥珀酸盐、乳酸盐和PAH的外向梯度刺激了尿酸盐的上坡积累。内向碱性pH梯度的施加刺激了乳酸盐和琥珀酸盐的上坡积累。乳酸盐和琥珀酸盐的Na+共转运途径也存在。在存在内向Na+梯度的情况下,乳酸盐刺激了尿酸盐的上坡积累,表明介导Na+-乳酸盐共转运和乳酸盐-尿酸盐交换的途径至少在一些膜囊泡中共存。我们得出结论,狗肾微绒毛膜囊泡中尿酸盐的阴离子交换途径对其他有机阴离子具有亲和力,并可在多种交换模式下起作用。管腔尿酸盐或Cl-与细胞内有机阴离子或OH-的交换是近端小管中实现上坡阴离子重吸收的一种可能机制。