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Nrf2: control of sensitivity to carcinogens

机译:NRF2:控制对致癌物的敏感性

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Induction of enzymes that enhance the detoxication of chemical carcinogens has been a broadly effective strategy for chemoprevention of experimental carcinogenesis in rodent models. Several inducing agents are now in clinical trials to evaluate utility for prevention of cancers associated with unavoidable high exposures to environmental carcinogens. The successes of these pre-clinical and clinical interventions lead to studies to define the molecular basis for protection by these agents, which now include phenolic antioxidants, dithiolethiones, isothiocyanates, and triterpenoids. In the mid-1990s, the NF-E2-related factor 2 (Nrf2) transcription factor was identified as a key regulator of the inducible expression of enzymes such as glutathione S-transferases and NAD(P)H: quinone oxidoreductase in catalyzing the detoxication of reactive electrophiles and oxidants that contribute to the formation of mutations and ultimately cancers. Nrf2 is now recognized to regulate a broad cytoprotective, transcriptional response leading to prevention of damage to DNA, proteins and lipids; recognition, repair and removal of macromolecular damage; and tissue renewal following toxic assaults. Highlighting the importance of this pathway as a determinant of susceptibility to carcinogenesis, multiple studies now demonstrate enhanced incidence, multiplicity, and/or tumor burden in Nrf2-disrupted mice compared to wild-type in models of inflammation and colon cancer, bladder cancer, lung disease and cancer, stomach cancer, mammary cancer, skin cancer, and hepatocarcinogenesis.
机译:诱导增强化学致癌物解毒作用的酶已成为化学预防啮齿动物模型中实验性致癌作用的广泛有效策略。现在,几种诱导剂正在临床试验中,以评估其在预防与不可避免的高暴露于环境致癌物有关的癌症中的效用。这些临床前和临床干预措施的成功导致人们进行了研究,以定义这些药物保护的分子基础,这些药物现在包括酚类抗氧化剂,二硫代噻吩酮,异硫氰酸酯和三萜类化合物。在1990年代中期,已将NF-E2相关因子2(Nrf2)转录因子确定为可诱导表达的酶(例如谷胱甘肽S-转移酶和NAD(P)H:醌氧化还原酶)催化脱毒的关键调节因子。导致突变形成并最终导致癌症的反应性亲电试剂和氧化剂。现在人们认识到Nrf2可以调节广泛的细胞保护性转录反应,从而防止对DNA,蛋白质和脂质的破坏。识别,修复和消除大分子损伤;以及中毒袭击后组织的更新。在炎症和结肠癌,膀胱癌,肺癌模型中,与野生型相比,Nrf2干扰小鼠的发病率,多重性和/或肿瘤负荷增加,突显了该途径作为致癌性易感性决定因素的重要性。疾病和癌症,胃癌,乳腺癌,皮肤癌和肝癌的发生。

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