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首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Role of extracellular thiols in accumulation and distribution of inorganic mercury in rat renal proximal and distal tubular cells.
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Role of extracellular thiols in accumulation and distribution of inorganic mercury in rat renal proximal and distal tubular cells.

机译:细胞外硫醇在大鼠肾脏近端和远端肾小管细胞中无机汞的积累和分布中的作用。

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摘要

Distribution of inorganic mercury (Hg) into both acid-soluble and protein-bound fractions of proximal tubular (PT) cells from the rat increased with increasing concentrations of Hg up to 10 microM. Little correlation was found between subcellular distribution of Hg and dose in distal tubular (DT) cells. Cellular accumulation of Hg was rapid, reaching equilibrium values by 10 to 15 min. Cellular content of Hg was significantly higher in PT cells than in DT cells at 1 microM Hg. To assess the effect of extracellular thiols on the intracellular accumulation of Hg, PT and DT cells were coincubated with Hg and cysteine, glutathione (GSH), bovine serum albumin (BSA) or 2,3-dimercapto-1-propanesulfonic acid (DMPS) in a 4:1 thiol:Hg molar ratio. Coexposure with Hg and cysteine increased intracellular accumulation of Hg in PT cells at 0.1 microM Hg relative to exposure to Hg alone, consistent with an Hg-cysteine conjugate being a transport form of Hg. In contrast, coexposure with Hg and BSA or DMPS markedly decreased accumulation of Hg relative to cells exposed to Hg alone in both cell types. Coexposure with Hg and GSH also decreased accumulation of Hg relative to exposure to Hg alone, but the decrease was less than coexposure with either BSA or DMPS, suggesting that either an Hg-GSH complex may be a transport form or that some of the Hg-GSH complexes were degraded to Hg-cysteine by the action of brush-border membrane enzymes. These results demonstrate that extracellular thiols markedly alter the renal accumulation of Hg and suggest that some Hg-thiol conjugates may be important physiological transport forms of Hg in the kidney.
机译:随着汞浓度的增加,直至高达10 microM,无机汞(Hg)在大鼠近端肾小管(PT)细胞的酸溶级分和蛋白质结合级分中的分布都增加了。汞的亚细胞分布与远端小管(DT)细胞中的剂量之间几乎没有相关性。汞的细胞蓄积迅速,到10至15分钟达到平衡值。在1 microM Hg下,PT细胞中Hg的细胞含量显着高于DT细胞。为了评估细胞外硫醇对Hg在细胞内积累的影响,将PT和DT细胞与Hg和半胱氨酸,谷胱甘肽(GSH),牛血清白蛋白(BSA)或2,3-二巯基-1-丙烷磺酸(DMPS)共孵育硫醇:Hg摩尔比为4:1。与汞和半胱氨酸的共同暴露相对于单独暴露于Hg,在0.1 microM Hg下增加了PT细胞中Hg在细胞内的积累,这与Hg-半胱氨酸结合物是Hg的运输形式相一致。相反,相对于两种细胞类型中单独暴露于Hg的细胞,与Hg和BSA或DMPS共同暴露显着降低Hg的积累。与单独暴露于Hg相比,与Hg和GSH共同暴露也降低了Hg的积累,但减少幅度小于与BSA或DMPS共同暴露,这表明Hg-GSH复合物可能是转运形式或某些Hg- GSH复合物通过刷边界膜酶的作用降解为Hg-半胱氨酸。这些结果表明细胞外硫醇显着改变了汞在肾脏中的积累,并表明某些汞-硫醇结合物可能是肾脏中汞的重​​要生理转运形式。

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