首页> 美国卫生研究院文献>Mutagenesis >The impact of p53 function on the metabolic activation of the carcinogenic air pollutant 3-nitrobenzanthrone and its metabolites 3-aminobenzanthrone and N-hydroxy-3-aminobenzanthrone in human cells
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The impact of p53 function on the metabolic activation of the carcinogenic air pollutant 3-nitrobenzanthrone and its metabolites 3-aminobenzanthrone and N-hydroxy-3-aminobenzanthrone in human cells

机译:p53功能对人类细胞中致癌性空气污染物3-硝基苯并蒽酮及其代谢物3-氨基苯并蒽酮和N-羟基-3-氨基苯并蒽酮的代谢活化的影响

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摘要

The tumour suppressor p53, encoded by TP53, is a key player in a wide network of signalling pathways. We investigated its role in the bioactivation of the environmental carcinogen 3-nitrobenzanthrone (3-NBA)found in diesel exhaust and its metabolites 3-aminobenzanthrone (3-ABA) and N-hydroxy-3-aminobenzanthrone (N-OH-3-ABA) in a panel of isogenic human colorectal HCT116 cells differing only with respect to their TP53 status [i.e. TP53(+/+), TP53(+/−), TP53(−/−), TP53(R248W/+) or TP53(R248W/−)]. As a measure of metabolic competence, DNA adduct formation was determined using 32P-postlabelling. Wild-type (WT) p53 did not affect the bioactivation of 3-NBA; no difference in DNA adduct formation was observed in TP53(+/+), TP53(+/−) and TP53(−/−) cells. Bioactivation of both metabolites 3-ABA and N-OH-3-ABA on the other hand was WT-TP53 dependent. Lower 3-ABA- and N-OH-3-ABA-DNA adduct levels were found in TP53(+/−) and TP53(−/−) cells compared to TP53(+/+) cells, and p53’s impact was attributed to differences in cytochrome P450 (CYP) 1A1 expression for 3-ABA whereas for N-OH-3-ABA, an impact of this tumour suppressor on sulphotransferase (SULT) 1A1/3 expression was detected. Mutant R248W-p53 protein function was similar to or exceeded the ability of WT-p53 in activating 3-NBA and its metabolites, measured as DNA adducts. However, identification of the xenobiotic-metabolising enzyme(s) (XMEs), through which mutant-p53 regulates these responses, proved difficult to decipher. For example, although both mutant cell lines exhibited higher CYP1A1 induction after 3-NBA treatment compared to TP53(+/+) cells, 3-NBA-derived DNA adduct levels were only higher in TP53(R248W/−) cells but not in TP53(R248W/+) cells. Our results show that p53’s influence on carcinogen activation depends on the agent studied and thereby on the XMEs that mediate the bioactivation of that particular compound. The phenomenon of p53 regulating CYP1A1 expression in human cells is consistent with other recent findings; however, this is the first study highlighting the impact of p53 on sulphotransferase-mediated (i.e. SULT1A1) carcinogen metabolism in human cells.
机译:由TP53编码的抑癌基因p53是广泛的信号通路网络中的关键角色。我们调查了其在柴油机废气中发现的环境致癌物3-硝基苯并蒽酮(3-NBA)及其代谢物3-氨基苯并蒽酮(3-ABA)和N-羟基-3-氨基苯并蒽酮(N-OH-3-ABA)的生物活化作用)在一组同基因的人类结肠直肠HCT116细胞中,仅在其TP53状态上有所不同[即TP53(+/-),TP53(+/-),TP53(+/-),TP53(R248W / +)或TP53(R248W /-)]。作为代谢能力的一种度量,使用 32 P-postlabeling确定DNA加合物的形成。野生型(WT)p53不会影响3-NBA的生物激活;在TP53(+ / +),TP53(+/-)和TP53(-/-)细胞中未观察到DNA加合物形成的差异。另一方面,代谢物3-ABA和N-OH-3-ABA的生物活化均取决于WT-TP53。与 TP53(+ /)相比,TP53(+/-)和 TP53(-/-)细胞中的3-ABA-和N-OH-3-ABA-DNA加合物水平更低+ )细胞和p53的影响归因于3-ABA的细胞色素P450(CYP)1A1表达的差异,而对于 N -OH-3-ABA的这种抑制因子的影响在磺基转移酶(SULT)上检测到1A1 / 3表达。以DNA加合物测量,突变的R248W-p53蛋白功能类似于或超过了WT-p53激活3-NBA及其代谢产物的能力。但是,鉴定出异种生物代谢酶(XME)很难通过突变p53调节这些反应进行鉴定。例如,尽管与 TP53(+ / + )细胞相比,两种突变细胞在3-NBA处理后均表现出更高的 CYP1A1 诱导,但3-NBA衍生的DNA加合物水平却是仅在 TP53(R248W /-)单元中较高,而在 TP53(R248W / + )单元中则没有。我们的结果表明,p53对致癌物活化的影响取决于所研究的试剂,进而取决于介导该特定化合物生物活化的XME。 p53调节人细胞中 CYP1A1 表达的现象与最近的其他发现是一致的。但是,这是第一项研究突出p53对硫转移酶介导的人细胞致癌物代谢的影响。

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