首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Zinc Finger Nuclease Knock-out of NADPH:Cytochrome P450 Oxidoreductase (POR) in Human Tumor Cell Lines Demonstrates That Hypoxia-activated Prodrugs Differ in POR Dependence
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Zinc Finger Nuclease Knock-out of NADPH:Cytochrome P450 Oxidoreductase (POR) in Human Tumor Cell Lines Demonstrates That Hypoxia-activated Prodrugs Differ in POR Dependence

机译:锌手指核酸酶敲除的NADPH:细胞色素P450氧化还原酶(POR)在人类肿瘤细胞系中表明缺氧激活的前药在POR依赖方面有所不同。

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摘要

Hypoxia, a ubiquitous feature of tumors, can be exploited by hypoxia-activated prodrugs (HAP) that are substrates for one-electron reduction in the absence of oxygen. NADPH:cytochrome P450 oxidoreductase (POR) is considered one of the major enzymes responsible, based on studies using purified enzyme or forced overexpression in cell lines. To examine the role of POR in HAP activation at endogenous levels of expression, POR knock-outs were generated in HCT116 and SiHa cells by targeted mutation of exon 8 using zinc finger nucleases. Absolute quantitation by proteotypic peptide mass spectrometry of DNA sequence-confirmed multiallelic mutants demonstrated expression of proteins with residual one-electron reductase activity in some clones and identified two (Hko2 from HCT116 and S2ko1 from SiHa) that were functionally null by multiple criteria. Sensitivities of the clones to 11 HAP (six nitroaromatics, three benzotriazine N-oxides, and two quinones) were compared with wild-type and POR-overexpressing cells. All except the quinones were potentiated by POR overexpression. Knocking out POR had a marked effect on antiproliferative activity of the 5-nitroquinoline SN24349 in both genetic backgrounds after anoxic exposure but little or no effect on activity of most other HAP, including the clinical stage 2-nitroimidazole mustard TH-302, dinitrobenzamide mustard PR-104A, and benzotriazine N-oxide SN30000. Clonogenic cell killing and reductive metabolism of PR-104A and SN30000 under anoxia also showed little change in the POR knock-outs. Thus, although POR expression is a potential biomarker of sensitivity to some HAP, identification of other one-electron reductases responsible for HAP activation is needed for their rational clinical development.
机译:缺氧是肿瘤普遍存在的特征,可通过缺氧激活的前药(HAP)开发,缺氧激活的前药是缺氧时单电子还原的底物。 NADPH:细胞色素P450氧化还原酶(POR)被认为是负责任的主要酶之一,基于使用纯化的酶或在细胞系中强迫过表达的研究。为了检查内源表达水平下POR在HAP激活中的作用,使用锌指核酸酶通过外显子8的定向突变在HCT116和SiHa细胞中产生了POR敲除。通过DNA序列确认的多等位基因突变体的蛋白原型肽质谱法进行的绝对定量证明了某些克隆中具有残留单电子还原酶活性的蛋白的表达,并鉴定了两种(通过HCT116的Hko2和从SiHa的S2ko1)在多个标准下功能均无效。将克隆对11 HAP(六个硝基芳族化合物,三个苯并三嗪N-氧化物和两个醌)的敏感性与野生型和POR过表达的细胞进行了比较。除醌外,所有其他化合物均通过POR过表达增强。敲除POR对缺氧暴露后的两种遗传背景下的5-硝基喹啉SN24349的抗增殖活性都有显著作用,但对大多数其他HAP的活性影响很小或没有影响,包括临床上的2-硝基咪唑芥子TH-302,二硝基苯甲酰胺芥菜PR -104A和N-氧化苯并三嗪SN30000。在缺氧条件下,PR-104A和SN30000的克隆细胞杀伤和还原代谢也显示出POR敲除的变化很小。因此,尽管POR表达是对某些HAP敏感性的潜在生物标志物,但对于其合理的临床开发,还需要鉴定负责HAP活化的其他单电子还原酶。

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