Manganel M, Roch-Ramel F, Murer H
Am J Physiol. 1985 Sep;249(3 Pt 2):F400-8. doi: 10.1152/ajprenal.1985.249.3.F400.
Pyrazinoate (PZA) is an organic anion actively reabsorbed and secreted in the mammalian kidney. In experiments with rabbit renal brush border membrane vesicles, we characterized a sodium-PZA cotransport mechanism that could be involved in reabsorption. An inwardly directed sodium gradient stimulated the influx of PZA. The sodium-dependent transport was electroneutral, suggesting a 1:1 stoichiometry. The kinetic constants for sodium-PZA cotransport were measured under initial linear flux and zero trans conditions for both sodium and PZA. The apparent Km for sodium was about 60 mM. At 90 mM sodium the apparent Km for PZA was about 1.1 mM; increasing the sodium concentration augmented the apparent affinity for PZA. Cis inhibition of sodium-dependent PZA uptake was observed by the addition of nicotinate, lactate, probenecid, succinate, beta-hydroxybutyrate, and salicylate. Urate had no effect. [14C]PZA uptake was trans stimulated by PZA itself, lactate, and nicotinate. PZA shares a transport system(s) involved in the proximal tubular reabsorption of these two anions.
吡嗪酸盐(PZA)是一种在哺乳动物肾脏中被主动重吸收和分泌的有机阴离子。在对兔肾刷状缘膜囊泡进行的实验中,我们确定了一种可能参与重吸收的钠-PZA协同转运机制。内向的钠梯度刺激了PZA的流入。钠依赖性转运是电中性的,表明其化学计量比为1:1。在钠和PZA的初始线性通量和零转运条件下测量了钠-PZA协同转运的动力学常数。钠的表观Km约为60 mM。在90 mM钠浓度下,PZA的表观Km约为1.1 mM;增加钠浓度会增加对PZA的表观亲和力。通过添加烟酸、乳酸、丙磺舒、琥珀酸、β-羟基丁酸和水杨酸盐观察到对钠依赖性PZA摄取的顺式抑制。尿酸盐没有作用。[14C]PZA摄取受到PZA本身、乳酸和烟酸的反式刺激。PZA与参与这两种阴离子近端小管重吸收的一个或多个转运系统相同。