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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Voltage-driven p-aminohippurate, chloride, and urate transport in porcine renal brush-border membrane vesicles.
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Voltage-driven p-aminohippurate, chloride, and urate transport in porcine renal brush-border membrane vesicles.

机译:电压驱动的p-氨基马尿酸盐,氯化物和尿酸盐在猪肾刷状边界膜囊泡中的转运。

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摘要

p-Aminohippurate (PAH) and urate are secreted into the proximal tubule lumen across the brush-border membrane. Here we used brush-border membrane vesicles from pig kidney to study PAH and urate transport. Efflux and influx of [3H]PAH were influenced by K+-diffusion potentials indicating electrogenic PAH transport. An outside>inside PAH concentration difference accelerated voltage-sensitive, Na+-coupled D-glucose uptake as efficiently as did an outside>inside Cl- concentration difference, suggesting comparable conductances for PAH and Cl- in brush-border membrane vesicles. Up to 1 mM of the uricosurics indacrinone, tienilic acid, losartan and probenecid, as well as of the stilbenes, DIDS and SITS, and of the loop diuretics furosemide and bumetanide inhibited voltage-driven PAH uptake, but not, or only slightly, voltage-driven Cl- uptake. Voltage-driven [14C]urate uptake, however, was inhibited by 0.1 mM DIDS, 0.2 mM losartan and 0.5 mM probenecid to a similar extent as [3H]PAH uptake. One millimolar pyrazinoic acid, oxonate, xanthine and adenosine inhibited neither [3H]PAH nor [14C]urate uptake. These results suggest that PAH and urate share an anion conductance which is distinct from the Cl- conductance and is probably not the same as a recently identified urate channel (Leal-Pinto E et a]. J Biol Chem 272:617-625, 1997).
机译:p-氨基马尿酸盐(PAH)和尿酸盐穿过刷状边界膜分泌到近端小管腔中。在这里,我们使用猪肾脏的刷状边界膜囊泡研究PAH和尿酸转运。 [3H] PAH的流出和流入受K +扩散电势的影响,表明电致PAH转运。外部>内部PAH浓度差异与外部>内部Cl-浓度差异一样有效地加速了电压敏感的Na +耦合的D-葡萄糖的吸收,表明刷状边界膜囊泡中PAH和Cl-的电导相当。高达1 mM的尿酸尿酸茚三酮,联苯二酸,氯沙坦和丙磺舒以及对苯二酚,DIDS和SITS以及回路利尿剂速尿和布美他尼抑制电压驱动的PAH吸收,但不抑制或仅轻微抑制电压驱动的Cl吸收。但是,电压驱动的[14C]尿酸盐吸收被0.1 mM DIDS,0.2 mM氯沙坦和0.5 mM丙磺舒抑制,其吸收程度与[3H] PAH吸收相似。一种毫摩尔的吡嗪酸,草酸根,黄嘌呤和腺苷既不抑制[3H] PAH也不抑制[14C]尿酸的吸收。这些结果表明PAH和尿酸盐具有与Cl-电导不同的阴离子电导,并且可能与最近鉴定的尿酸盐通道不同(Leal-Pinto E等人.J Biol Chem 272:617-625,1997)。 )。

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