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首页> 外文期刊>Analytical chemistry >Quantification of N-(deoxyguanosin-8-yl)-4-aminobiphenyl adducts in human lymphoblastoid TK6 cells dosed with N-hydroxy-4-acetylaminobiphenyl and their relationship to mutation, toxicity, and gene expression profiling
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Quantification of N-(deoxyguanosin-8-yl)-4-aminobiphenyl adducts in human lymphoblastoid TK6 cells dosed with N-hydroxy-4-acetylaminobiphenyl and their relationship to mutation, toxicity, and gene expression profiling

机译:N-羟基-4-乙酰基联苯给药的人淋巴母细胞类TK6细胞中N-(脱氧鸟苷-8-基)-4-氨基联苯加合物的定量及其与突变、毒性和基因表达谱的关系

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摘要

Gene expression profiles that are anchored to phenotypic endpoints may lead to the identification of signatures that predict mutagenicity or carcinogenicity. The study presented here describes the analysis of DNA adducts in the human TK6 lymphoblastoid cell line after exposure to N-hydroxy-4-aminobiphenyl, a mutagenic metabolite of 4-aminobiphenyl. A validated nano-LC microelectrospray mass spectrometry assay is reported for the detection and quantification of N-(deoxyguanosin-8-yl)-4-aminobiphenyl (dG-C8-ABP), the principal DNA adduct of 4-aminobiphenyl. Limits of quantification, based on a signal-to-noise ratio of 10: 1, are determined to correspond to similar to 27 fg of dG-C8-ABP injected on-column. The assay has been used to measure the steady-state levels of the adduct in the human TK6 lymphoblastoid cell line as a function of dose (0.5, 1.0, and 10.0 mu M) and time ( 2, 6, and 27 h) after exposure to N- hydroxy-4-aminobiphenyl. The levels of dG-C8-ABP adducts in the cells, ranging from 18 to 500 adducts in 10(9) nucleotides, were then correlated to cell toxicity, induced mutation at the TK ( thymidine kinase) and HPRT loci, and gene expression profiling through microarray analysis. Cell cultures were evaluated for toxicity by growth curve extrapolation, mutation assays were performed on the HPRT and TK loci, and gene expression profiles were generated by analyses using microarray technology. In the mutation assay analysis, as the toxicant concentration increased, there was an increase in mutation fraction, indicating a direct correlation to metabolite dosing level and mutations occurring at these two loci. Statistical analysis of the gene expression data determined that a total of 2250 genes exhibited statistically significant changes in expression after treatment with N- OH-AABP ( P <0.05). Among the genes identified, 2245 were up-regulated, whereas 5 genes that had functions in cell survival and cell growth and, hence, could be indicators of toxicity, were down-regulated relative to controls. The results demonstrate the value of anchoring gene expression patterns to phenotypic markers, such as DNA adduct levels, toxicity, and mutagenicity.
机译:锚定在表型终点的基因表达谱可能导致识别预测致突变性或致癌性的特征。这里介绍的研究描述了暴露于N-羟基-4-氨基联苯(4-氨基联苯的诱变代谢物)后人TK6淋巴母细胞样细胞系中DNA加合物的分析。报道了一种经过验证的纳米LC微电喷雾质谱法,用于检测和定量N-(脱氧鸟苷-8-基)-4-氨基联苯(dG-C8-ABP),这是4-氨基联苯的主要DNA加合物。根据10:1的信噪比,定量限相当于柱上进样的27 fg的dG-C8-ABP。该测定法已用于测量人TK6淋巴母细胞样细胞系中加合物的稳态水平,作为剂量(0.5,1.0和10.0μM)和时间(2,6和27小时)暴露于N-羟基-4-氨基联苯后的函数。然后,将细胞中 dG-C8-ABP 加合物的水平(10 (9) 个核苷酸中的 18 至 500 个加合物)与细胞毒性、TK(胸苷激酶)和 HPRT 位点的诱导突变以及通过微阵列分析的基因表达谱相关联。通过生长曲线外推评估细胞培养物的毒性,对HPRT和TK位点进行突变测定,并使用微阵列技术进行分析,生成基因表达谱。在突变测定分析中,随着毒物浓度的增加,突变分数增加,表明与代谢物剂量水平和这两个位点发生的突变直接相关。对基因表达数据进行统计分析,发现共有2250个基因在N-OH-AABP处理后表达发生统计学显著变化(P<0.05)。在鉴定的基因中,2245个基因上调,而5个在细胞存活和细胞生长中起作用的基因,因此可以作为毒性指标,相对于对照组下调。结果证明了将基因表达模式锚定到表型标记物(如DNA加合物水平、毒性和致突变性)的价值。

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