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最易受2,3,7,8-四氯二苯并对二噁英(TCDD)影响和最具TCDD抗性的大鼠品系的芳烃(AH)受体的物理化学差异。

Physicochemical differences in the AH receptors of the most TCDD-susceptible and the most TCDD-resistant rat strains.

作者信息

Pohjanvirta R, Viluksela M, Tuomisto J T, Unkila M, Karasinska J, Franc M A, Holowenko M, Giannone J V, Harper P A, Tuomisto J, Okey A B

机构信息

Department of Environmental Medicine, National Public Health Institute, Kuopio, FIN-70701, Finland.

出版信息

Toxicol Appl Pharmacol. 1999 Feb 15;155(1):82-95. doi: 10.1006/taap.1998.8565.

Abstract

Long-Evans rats (strain Turku AB; L-E) are at least 1000-fold more sensitive (LD50 about 10 microg/kg) to the acute lethal effects of 2, 3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) than are Han/Wistar (Kuopio; H/W) rats (LD50 > 9600 microg/kg). The AH receptor (AHR) is believed to mediate the toxic effects of TCDD and related halogenated aromatic hydrocarbons. We compared the AHRs of L-E and H/W rats to determine if there were any structural or functional receptor differences that might be related to the dramatic difference in the sensitivity of these two strains to the lethal effects of TCDD. Cytosols from liver and lung of the sensitive L-E rats contained about twofold higher levels of specific binding sites for [3H]TCDD than occurred in H/W rats; the Kd for binding of [3H]TCDD to AHR in hepatic cytosols was similar between the two strains. Addition of the oxyanions, molybdate or tungstate (20 mM), had little effect upon ligand binding to AHR in hepatic cytosols from L-E rats whereas in cytosols from H/W rats these agents substantially diminished or totally abolished TCDD binding. The AHR in H/W cytosols also lost ligand-binding function when NaCl (20 to 400 mM) was added to the buffer whereas, in cytosols from L-E rats, the addition of 400 mM NaCl caused the receptor complex to shift from 9S to 6S during velocity sedimentation but did not destroy ligand binding function. AHR from hepatic cytosol of both the L-E and H/W rats could be transformed to the DNA-binding state in the presence of TCDD or other dioxin congeners as assessed by gel mobility shift assays. The most dramatic difference in AHR properties between L-E and H/W rats is molecular mass. Immunoblotting of cytosolic proteins revealed that the AHR in L-E rats has an apparent mass of approximately 106 kDa, similar to the mass of the receptor previously reported in several other common laboratory rat strains. In contrast, the mass of the AHR in H/W rats is approximately 98 kDa, significantly smaller than the mass of receptor reported in any other rat strains. F1 offspring of a cross between L-E and H/W rats expressed both the 106- and the 98-kDa protein. There was no apparent difference in the mass of the AHR nuclear translocator protein (ARNT) between the two strains, but the hepatic concentration of ARNT was about three times as high in L-E as in H/W rats. It will be interesting to find out how the altered structure of the AHR in H/W rats is related to their remarkable resistance to the lethal effects of TCDD.

摘要

长 Evans 大鼠(图尔库 AB 品系;L-E)对 2,3,7,8-四氯二苯并对二噁英(TCDD)的急性致死作用的敏感性(半数致死量约为 10 微克/千克)比 Han/Wistar(库奥皮奥;H/W)大鼠(半数致死量>9600 微克/千克)至少高 1000 倍。芳香烃受体(AHR)被认为介导 TCDD 和相关卤代芳烃的毒性作用。我们比较了 L-E 和 H/W 大鼠的 AHR,以确定是否存在任何结构或功能上的受体差异,这些差异可能与这两个品系对 TCDD 致死作用敏感性的显著差异有关。敏感的 L-E 大鼠肝脏和肺的胞质溶胶中[3H]TCDD 的特异性结合位点水平比 H/W 大鼠高约两倍;两个品系肝脏胞质溶胶中[3H]TCDD 与 AHR 的结合解离常数相似。添加氧阴离子钼酸盐或钨酸盐(20 毫摩尔)对 L-E 大鼠肝脏胞质溶胶中配体与 AHR 的结合影响很小,而在 H/W 大鼠的胞质溶胶中,这些试剂会显著降低或完全消除 TCDD 的结合。当向缓冲液中添加 NaCl(20 至 400 毫摩尔)时,H/W 胞质溶胶中的 AHR 也会丧失配体结合功能,而在 L-E 大鼠的胞质溶胶中,添加 400 毫摩尔 NaCl 会导致受体复合物在速度沉降过程中从 9S 转变为 6S,但不会破坏配体结合功能。通过凝胶迁移率变动分析评估,L-E 和 H/W 大鼠肝脏胞质溶胶中的 AHR 在 TCDD 或其他二噁英同系物存在的情况下都可以转化为 DNA 结合状态。L-E 和 H/W 大鼠 AHR 特性最显著的差异是分子量。对胞质蛋白进行免疫印迹分析表明,L-E 大鼠中的 AHR 表观分子量约为 106 千道尔顿,与之前在其他几种常见实验大鼠品系中报道的受体分子量相似。相比之下,H/W 大鼠中 AHR 的分子量约为 98 千道尔顿,明显小于其他任何大鼠品系中报道的受体分子量。L-E 和 H/W 大鼠杂交的 F1 代后代同时表达 106 千道尔顿和 98 千道尔顿的蛋白质。两个品系之间 AHR 核转运蛋白(ARNT)的分子量没有明显差异,但 L-E 大鼠肝脏中 ARNT 的浓度约为 H/W 大鼠的三倍。弄清楚 H/W 大鼠中 AHR 结构的改变如何与它们对 TCDD 致死作用的显著抗性相关将是很有趣的。

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