Activation of benzylic alcohols to mutagens by rat and human sulfotransferases expressed in Escherichia coli

Hansruedi Glatt , Karin Pauly , Andreas Czich , Josie L. Falany , Charles N. Falany
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引用次数: 46

Abstract

Human hydroxysteroid sulfotransferase, human phenol-sulfating form of phenol sulfotransferase, rat hydroxysteroid sulfotransferase a and rat phenol sulfotransferase IV were expressed in Escherichia coli. Cytosol preparations of transformed bacteria were used as activating systems in mutagenicity tests with Salmonella typhimurium TA 98. All test compounds, 1-hydroxymethylpyrene, 2-hydroxymethylpyrene, 1-(1-pyrenyl)ethanol, 9-hydroxymethylanthracene, 7-hydroxymethyl-12-methylbenz[a]anthracene and 4H-cyclopental[def]chrysen-4-ol, were activated by both hydroxysteroid sulfotransferases investigated. However, 1-(1-pyrenyl)ethanol was 67-fold more efficiently activated by the human enzyme, whereas 7-hydroxymethyl-12-methylbenz[a]anthracene was 27-fold more efficiently activated by the rat enzyme. The phenol sulfotransferases showed relatively low activities with the benzylic alcohols investigated. The only exception was 4H-cyclopental[def]chrysen-4-ol, which was activated efficiently by rat phenol sulfotransferase IV. We had previously tested the ability of rat and human hepatic cytosol preparations to activate the same compounds. The results of a statistical analysis suggest that the activities of human hydroxysteroid sulfotransferase, rat hydroxysteroid sulfotransferase a and phenol sulfotransferase IV can account for a substantial portion of the activation of benzylic alcohols in human, female rat and male rat liver, respectively.

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大鼠和人大肠杆菌中表达的硫转移酶对苯醇对诱变剂的激活作用
人羟基类固醇亚砜转移酶、人苯酚硫酸化形式的苯酚亚砜转移酶、大鼠羟基类固醇亚砜转移酶a和大鼠酚亚砜转移酶IV在大肠杆菌中表达。利用转化菌细胞质制剂作为激活体系,对鼠伤寒沙门菌ta98进行了致突变性试验。1-羟甲基芘、2-羟甲基芘、1-(1-芘基)乙醇、9-羟甲基蒽、7-羟甲基-12-甲基苯[a]蒽和4h -环戊烯[def]黄菊花-4-醇均被两种羟基类固醇磺化转移酶激活。然而,1-(1-芘基)乙醇被人酶激活的效率是人酶的67倍,而7-羟甲基-12-甲基苯[a]蒽被大鼠酶激活的效率是人酶的27倍。苯酚磺基转移酶对苯基醇的活性较低。唯一的例外是4h -环戊烯[def]黄菊花-4-醇,它被大鼠苯酚磺基转移酶IV有效激活。我们之前测试了大鼠和人肝细胞溶胶制剂激活相同化合物的能力。统计分析结果表明,人羟基类固醇亚砜转移酶、大鼠羟基类固醇亚砜转移酶a和苯酚亚砜转移酶IV的活性分别可以解释人、雌性大鼠和雄性大鼠肝脏中苯基醇激活的很大一部分。
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