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谷胱甘肽状态与 Mrp2(-/-) 小鼠中无机汞的肾清除。

Glutathione status and the renal elimination of inorganic mercury in the Mrp2(-/-) mouse.

机构信息

Mercer University School of Medicine, Division of Basic Medical Sciences, Macon, Georgia, United States of America.

出版信息

PLoS One. 2013 Sep 5;8(9):e73559. doi: 10.1371/journal.pone.0073559. eCollection 2013.

Abstract

Multidrug resistance-associated proteins (MRP) 2 and 4 are localized in proximal tubular epithelial cells and participate in the renal elimination of xenobiotics. MRP2 has also been implicated in the renal and hepatic elimination of mercury. The current study tested the hypothesis that MRP2 and MRP4 are involved in renal and hepatic handling of inorganic mercury (Hg(2+)). We examined the disposition of Hg(2+) in Mrp2(-/-) mice and assessed the transport of mercuric conjugates in inside-out membrane vesicles containing human MRP4. Since MRP2 has been shown to utilize glutathione (GSH) for transport of select substrates, we examined renal concentrations of GSH and cysteine and the expression of glutamate cysteine ligase (GCL) in Mrp2(-/-) and FVB mice. The effect of Hg(2+) exposure on renal GSH levels was also assessed in these mice. Our data suggest that MRP2, but not MRP4, is involved in proximal tubular export of Hg(2+). In addition, GSH levels are greater in Mrp2(-/-) mice and exposure to Hg(2+) reduced renal levels of GSH. Expression of GCL was also altered in Mrp2(-/-) mice under normal conditions and following exposure to HgCl2. This study provides important novel data regarding the transport of Hg(2+) and the effect of Hg(2+) exposure on GSH levels.

摘要

多药耐药相关蛋白 2 和 4 定位于近端肾小管上皮细胞,参与外源性物质的肾脏排泄。MRP2 也参与汞的肾脏和肝脏排泄。本研究检验了这样一个假设,即 MRP2 和 MRP4 参与无机汞(Hg(2+))在肾脏和肝脏中的处理。我们检查了 Mrp2(-/-)小鼠中 Hg(2+)的分布,并评估了含有人 MRP4 的外翻膜囊泡中汞结合物的转运。由于已经证明 MRP2 利用谷胱甘肽(GSH)转运选择的底物,我们检查了 Mrp2(-/-)和 FVB 小鼠中肾脏中 GSH 和半胱氨酸的浓度以及谷氨酸半胱氨酸连接酶(GCL)的表达。还在这些小鼠中评估了 Hg(2+)暴露对肾脏 GSH 水平的影响。我们的数据表明,MRP2 但不是 MRP4 参与了 Hg(2+)的近端肾小管排泄。此外,Mrp2(-/-)小鼠中的 GSH 水平更高,Hg(2+)暴露降低了肾脏中的 GSH 水平。在正常条件下和暴露于 HgCl2 后,Mrp2(-/-)小鼠中的 GCL 表达也发生了改变。这项研究提供了关于 Hg(2+)转运和 Hg(2+)暴露对 GSH 水平影响的重要新数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0269/3764057/7304acc6d742/pone.0073559.g001.jpg

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