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High-performance liquid chromatographic analysis of 32P-postlabeled DNA-aromatic carcinogen adducts

机译:32P-后标记的DNA-芳族致癌物加合物的高性能液相色谱分析

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摘要

The technique of 32P postlabeling of DNA-carcinogen adducts is a useful and extremely sensitive method of detecting and quantitating DNA damage by carcinogens. We have adapted the 32P method to analysis by high-pressure liquid chromatography, making the procedure more rapid and convenient than when thin-layer chromatography is used. Following DNA isolation and hydrolysis, nucleotide-carcinogen adducts are enhanced relative to normal nucleotides by solvent extraction and then labeled with high-specific-activity [[gamma]-32P]ATP. The resulting 32P-postlabeled nucleotides are resolved by reverse-phase ion-pair HPLC. After as little as 3 h of exposure to carcinogens, DNA adducts can be demonstrated from 1 [mu]g or less of mouse hepatic DNA. Acetylated and nonacetylated adducts can be resolved from hepatic DNA of mice treated with 2-aminofluorene. Differences in DNA damage as measured by adduct formation were demonstrated between "rapid" and "slow" acetylator mouse strains. Rapid-acetylator C57BL/6J mice had three times the amount of hepatic DNA adducts as slow-acetylator A/J mice 3 h after a 60 mg/kg dose of 2-aminofluorene. 4-Aminobiphenyl and 2-naphthylamine each showed an adduct peak with retention time similar to that of the nonacetylated 2-aminofluorene adduct, while benzidine gave a major adduct that eluted somewhat earlier as would be expected for an acetylated adduct. The alkenylbenzenes, safrole and methyleugenol, also formed DNA adducts detectable by this method. DNA prepared from skin of mice painted with benzo[a]pyrene also contained carcinogen-DNA adducts detectable and resolvable by HPLC analysis following 32P postlabeling. The combination of HPLC with 32P postlabeling appears to be a useful technique for the rapid detection and quantitation of DNA damage caused by several classes of aromatic carcinogens.
机译:32P后标配DNA-致癌合物的技术是一种有用且极其敏感的方法,可通过致癌致癌和定量DNA损伤。我们已经通过高压液相色谱法调整了32P方法来分析,使得该过程比使用薄层色谱更快,方便。在DNA分离和水解之后,通过溶剂萃取相对于正常核苷酸来增强核苷酸 - 致癌物加工,然后用高比活性[γ-32p] ATP标记。通过反相离子对HPLC解析所得到的32P-后标记的核苷酸。在暴露于致癌物质的3小时之后,DNA加合物可以从1μg或更少的小鼠肝脏DNA中证明。可以从用2-氨基氟烯处理的小鼠的肝脏DNA分解乙酰化和非乙酰化加合物。通过加合物形成测量的DNA损伤的差异在“快速”和“慢”乙酰乙酰肠菌株之间。快速 - 乙酰锥C57BL / 6J小鼠在60mg / kg剂量的2-氨氟烯之后,肝脏DNA加合物的量为慢性乙酰酯A / J小鼠3小时。 4-氨基双烯基和2-萘胺各自显示出与非乙酰化的2-氨氟烯加合物类似的保留时间的加合物峰,而苯并胺在乙酰化加合物预期的预期上略微洗过的主要加合物。链烯基苯,脱胶和甲甲丁蛋酚,也形成了该方法可检测的DNA加合物。由苯并涂漆的小鼠皮肤制备的DNA [a]芘还含有致癌物质的加合物,通过在32p后标记后通过HPLC分析可检测和可解析。 HPLC与32P后标签的组合似乎是一种有用的技术,用于快速检测和定量由几种芳族致癌癌引起的DNA损伤。

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