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Genetically modified Chinese hamster ovary cells for investigating sulfotransferase-mediated cytotoxicity and mutation by 2-amino-1-methyl-6- phenylimidazo4,5-bpyridine

机译:转基因中国仓鼠卵巢细胞用于研究磺基转移酶介导的2-氨基-1-甲基-6-苯基咪唑并4,5-b吡啶的细胞毒性和突变

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摘要

To test the hypothesis that the sulfotransferase gene plays a role in the phase II bioactivation of PhIP, a heterocyclic amine found in cooked meats, we transfected the UV5P3 cell line with cDNA plasmids of human aryl sulfotransferases (HAST1 and HAST3). UV5P3 is a nucleotide excision repair-deficient and P4501A2-expressing CHO cell line that we have previously developed. Functionally transformed clones were identified by the differential cytotoxicity (DC) assay that used PhIP as the cytotoxic agent. Two clones designated 5P3H1 and 5P3H3, expressing HAST1 and HAST3, respectively, were chosen for further characterization. Correct fragment sizes of the sulfotransferase cDNAs were identified in both cell lines by polymerase chain reaction. Immunoblot analysis confirmed the expression of the sulfotransferase proteins. The addition of the sulfotransferase inhibitor DCNP decreased the cytotoxic effects of PhIP in a dose-dependent manner. The increase in cell growth was 6.5-fold for 5P3H1 and 2.4-fold for 5P3H3, relative to values obtained without DCNP. Based on D50 values, the dose that reduced the survival to 50% relative to untreated controls, the cytotoxic effect of PhIP was increased threefold for 5P3H1 and 1.87-fold for 5P3H3 cell lines over the parental UV5P3 line. There was also a small increase in the mutation response at the aprt locus. These newly established 5P3H1 and 5P3H3 sulfotransferase-expressing cells provide valuable mechanistic information of the bioactivation of PhIP and related compounds.
机译:为了检验硫转移酶基因在PhIP(在熟肉中发现的杂环胺)的II期生物激活中起作用的假设,我们用人芳基磺基转移酶(HAST1和HAST3)的cDNA质粒转染了UV5P3细胞系。 UV5P3是我们先前开发的核苷酸切除修复缺陷型和表达P4501A2的CHO细胞系。通过使用PhIP作为细胞毒性剂的差异细胞毒性(DC)分析鉴定了功能转化的克隆。选择两个分别表示HAST1和HAST3的克隆5P3H1和5P3H3进行进一步表征。通过聚合酶链反应在两种细胞系中鉴定出正确的磺基转移酶cDNA片段大小。免疫印迹分析证实了磺基转移酶蛋白的表达。磺基转移酶抑制剂DCNP的添加以剂量依赖性方式降低了PhIP的细胞毒性作用。相对于没有DCNP的值,5P3H1的细胞生长增加了6.5倍,5P3H3的细胞生长增加了2.4倍。基于D50值(相对于未处理的对照组,其将存活率降低至50%的剂量),与亲本UV5P3系相比,PhIP对5P3H1的细胞毒性作用增加了三倍,对5P3H3细胞系的作用增加了1.87倍。在aprt位点的突变反应也有少量增加。这些新近建立的5P3H1和5P3H3硫转移酶表达细胞为PhIP和相关化合物的生物活化提供了有价值的机制信息。

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