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氢醌-巯基结合物在苯所致毒性中的作用。

Role of hydroquinone-thiol conjugates in benzene-mediated toxicity.

机构信息

Department of Pharmacology and Toxicology, The University of Arizona Health Sciences Center, Southwest Environmental Health Sciences Center, Tucson, AZ 85721, United States.

出版信息

Chem Biol Interact. 2010 Mar 19;184(1-2):212-7. doi: 10.1016/j.cbi.2009.12.016. Epub 2009 Dec 23.

Abstract

Hydroquinone (HQ) is a metabolite of benzene, and in combination with phenol (PHE), reproduces benzene myelotoxicity. HQ readily oxidizes to 1,4-benzoquinone (1,4-BQ) followed by the reductive addition of glutathione (GSH). Subsequent cycles of oxidation and GSH addition give rise to a variety of mono-, and multi-GSH substituted conjugates. Following administration of PHE/HQ (1.1 mmol/kg/0.9 mmol/kg, ip) to male Sprague-Dawley (SD) rats, 2-(glutathion-S-yl)HQ [GS-HQ], 2,5-bis-(glutathion-S-yl)HQ [2,5-GS-HQ], 2,6-bis-(glutathion-S-yl)HQ [2,6-GS-HQ], and 2,3,5-tris-(glutathion-S-yl)HQ [2,3,5-GS-HQ] were all identified in bone marrow. 2-(Cystein-S-ylglycine)HQ [2-(CysGly)HQ], 2-(cystein-S-yl)HQ [2-(Cys)HQ], and 2-(N-acetylcystein-S-yl)HQ [2-(NACys)HQ] were also found in the bone marrow of PHE/HQ and benzene treated rats and mice, indicating the presence of an active mercapturic acid pathway within bone marrow. Moreover, 2,6-GS-HQ and 2,3,5-GS-HQ were hematotoxic when administered to rats. All of the HQ-GSH conjugates retain the ability to redox cycle and generate reactive oxygen species (ROS), and to arylate target proteins. Recent in vitro and in vivo studies in our laboratory revealed lysine and arginine residues as primary targets of 1,4-BQ, GS-HQ and 2-(NACys)HQ adduction. In contrast 1,4-BQ-adduction of cysteine residues may be a transient interaction, where physiological conditions dictate adduct stability. The generation of ROS and alkylation of proteins may both contribute to benzene-mediated myelotoxicity, and the two processes may be inter-dependent. However, the precise molecular mechanism by which benzene and HQ-GSH conjugates induce hematotoxicity remains to be determined. Within 18h of administration of PHE/HQ to SD rats a significant decrease in blood lymphocyte count was observed. At this early time point, erythrocyte counts and hemoglobin concentrations remained within the normal range. Concomitant with the decrease in lymphocyte count, western blot analysis of bone marrow lysate, using HQ-GSH and 4-hydroxy-2-nonenal (4HNE) specific antibodies, revealed the presence of HQ-GSH- and 4HNE-derived protein adducts. Identification of these adducts is required before the functional significance of such protein modifications can be determined.

摘要

对苯二酚(HQ)是苯的代谢物,与苯酚(PHE)结合可再现苯的骨髓毒性。HQ 很容易氧化为 1,4-苯醌(1,4-BQ),然后与谷胱甘肽(GSH)发生还原加成。随后的氧化和 GSH 添加循环产生各种单和多 GSH 取代的缀合物。在雄性 Sprague-Dawley(SD)大鼠中给予 PHE/HQ(1.1 mmol/kg/0.9 mmol/kg,ip)后,在骨髓中鉴定出 2-(谷胱甘肽-S-基)HQ [GS-HQ]、2,5-双-(谷胱甘肽-S-基)HQ [2,5-GS-HQ]、2,6-双-(谷胱甘肽-S-基)HQ [2,6-GS-HQ]和 2,3,5-三-(谷胱甘肽-S-基)HQ [2,3,5-GS-HQ]。在 PHE/HQ 和苯处理的大鼠和小鼠的骨髓中还发现了 2-(半胱氨酸-S-基甘氨酸)HQ [2-(CysGly)HQ]、2-(半胱氨酸-S-基)HQ [2-(Cys)HQ]和 2-(N-乙酰半胱氨酸-S-基)HQ [2-(NACys)HQ],表明骨髓中存在活跃的硫醚氨酸途径。此外,2,6-GS-HQ 和 2,3,5-GS-HQ 对大鼠具有血液毒性。所有 HQ-GSH 缀合物都保留了氧化还原循环和生成活性氧物种(ROS)以及芳基化靶蛋白的能力。我们实验室最近的体外和体内研究表明,1,4-BQ、GS-HQ 和 2-(NACys)HQ 加合物的赖氨酸和精氨酸残基是主要靶标。相比之下,1,4-BQ 与半胱氨酸残基的加合可能是一种短暂的相互作用,生理条件决定了加合物的稳定性。ROS 的生成和蛋白质的烷基化都可能导致苯介导的骨髓毒性,这两个过程可能相互依赖。然而,苯和 HQ-GSH 缀合物诱导血液毒性的确切分子机制仍有待确定。在给予 PHE/HQ 后 18 小时内,SD 大鼠的血液淋巴细胞计数显著下降。在这个早期时间点,红细胞计数和血红蛋白浓度仍在正常范围内。与淋巴细胞计数下降同时,使用 HQ-GSH 和 4-羟基-2-壬烯醛(4HNE)特异性抗体对骨髓裂解物进行的 Western blot 分析显示存在 HQ-GSH 和 4HNE 衍生的蛋白加合物。在确定这些加合物的存在之前,无法确定此类蛋白质修饰的功能意义。

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