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乙硫氨酸诱导的大鼠肝脏转移RNA甲基化变化的时间依赖性

Time dependence of ethionine-induced changes in rat liver transfer RNA methylation.

作者信息

Wainfan E, Tscherne J S, Maschio F A, Balis M E

出版信息

Cancer Res. 1977 Mar;37(3):865-9.

PMID:837382
Abstract

Methyl-deficient transfer RNA (tRNA) and subnormal levels of tRNA-methylating enzymes were found in the livers of female rats that had received injections of 250 mg DL-ethionine per kg body weight per day and 120 mg adenine per kg body weight per day for 2 days. Adenine alone had no effect. When the ethionine plus adenine injections were continued for longer periods of time, liver tRNA-methylating enzyme activity measured in vitro gradually increased and exceeded that of the controls. Concurrently, the relative methyl deficiency of liver tRNA decreased. The latter was evident because of the decreased ability of the tRNA to accept methyl groups during in vitro methylation catalyzed by homologous enzymes. Liver tRNA from animals that were treated with ethionine for 7 days could accept only about 40% as many methyl groups as could tRNA from animals that had received ethionine for only 2 days. No further significant change in methyl deficiency of the tRNA was seen when ethionine administration was extended to a total of 14 days. Enzyme preparations from ethionine-treated, but not control, rat livers contained dialyzable substances that inhibited the tRNA methylases and altered the base specificity of these enzymes. Although S-adenosylhomocysteine and S-adenosylethionine were found to be present in the liver preparations, neither of these substances could account for the observed changes in specificity.

摘要

在每天每千克体重注射250毫克DL-乙硫氨酸和120毫克腺嘌呤,持续2天的雌性大鼠肝脏中,发现了甲基缺乏的转运RNA(tRNA)和tRNA甲基化酶水平低于正常。单独使用腺嘌呤没有效果。当乙硫氨酸加腺嘌呤注射持续更长时间时,体外测定的肝脏tRNA甲基化酶活性逐渐增加并超过对照组。同时,肝脏tRNA的相对甲基缺乏减少。后者很明显,因为在同源酶催化的体外甲基化过程中,tRNA接受甲基的能力下降。用乙硫氨酸处理7天的动物的肝脏tRNA接受的甲基数量仅为仅接受2天乙硫氨酸的动物的tRNA的约40%。当乙硫氨酸给药延长至总共14天时,tRNA的甲基缺乏没有进一步的显著变化。来自乙硫氨酸处理的大鼠肝脏而非对照大鼠肝脏的酶制剂含有可透析物质,这些物质抑制tRNA甲基化酶并改变这些酶的碱基特异性。尽管在肝脏制剂中发现了S-腺苷同型半胱氨酸和S-腺苷乙硫氨酸,但这些物质都不能解释观察到的特异性变化。

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