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雌激素受体α通过细胞色素P450 1B1促进吸烟致癌物诱导的肺癌发生。

Estrogen receptor alpha promotes smoking-carcinogen-induced lung carcinogenesis via cytochrome P450 1B1.

作者信息

Li Ming-Yue, Liu Yi, Liu Li-Zhong, Kong Angel W Y, Zhao Zhili, Wu Bin, Long Xiang, Wu Jun, Ng Calvin S H, Wan Innes Y P, Du Jing, Mok Tony S K, Underwood Malcolm J, Chen George G

机构信息

Department of Surgery, The Chinese University of Hong Kong, Prince of Wales Hospital, Shatin, N.T., Hong Kong.

Guangdong Medical College, Zhangjiang, Guangdong, China.

出版信息

J Mol Med (Berl). 2015 Nov;93(11):1221-33. doi: 10.1007/s00109-015-1300-4. Epub 2015 Jun 5.

Abstract

UNLABELLED

Smoking carcinogen N-nitrosamines such as 4-methylnitrosamino-l-3-pyridyl-butanone (NNK) require metabolic activation to exert their genotoxicity. The first activation step is mainly catalyzed by cytochrome P450 (CYP) family. Estrogen receptor α (ERα) plays a role in lung pathology. The association between them is unknown. In this study, we explored the relationship and function of CYP1B1 and ERα in NNK-induced lung tumorigenesis. CYP1B1 and ERα expression was analyzed in human lung cancer tissues and NNK-induced lung tumor of A/J mice. Cell lines NCI-H23 and NCI-H460 were employed to further study the responsible mechanisms using various cellular and molecular approaches. Our in vivo experiments demonstrated that CYP1B1 and ERα were over-expressed at the early stage of NNK-induced lung tumorigenesis. Microarray analysis found that ERα was involved in the extracellular-signal-regulated kinase (ERK)/MAPK pathway. NNK activated RAS/ERK/AP1 as it remarkably increased the levels of p-ERK, c-Fos, and c-Jun but inhibited multiple negative regulators of Ras/ERK/AP1, Pdcd4, Spry1, Spry2, and Btg2 through up-regulating miR-21. Both CYP1B1 siRNA and ERK-specific inhibitor U0126 suppressed NNK-mediated ERα up-regulation, suggesting that ERα was downstream of CYP1B1 and ERK. ERK inactivation led to the accumulation of CYP1B1, indicating that CYP1B1 was upstream of ERK activation. Inhibition of ERK or ERα decreased NNK-induced cell proliferation. Blockage of CYP1B1 or ERα induced apoptosis of lung cancer cells. Collectively, NNK-mediated ERα induction is via CYP1B1 and ERK and contributes to the lung carcinogenesis. The inhibition of CYP1B1, ERK, or ERα may arrest the lung cancer cell growth, implicating a pivotal strategy for the treatment of lung cancer.

KEY MESSAGES

Smoking carcinogen NNK requires metabolic activation to exert their genotoxicity. CYP1B1 is the enzyme to catalyze NNK. NNK activates CYP1B1 and ERK to induce ERα. Inhibition of CYP1B1, ERK, or ERα arrests the lung cancer cell growth.

摘要

未标记

吸烟致癌物N-亚硝胺类,如4-甲基亚硝氨基-1-3-吡啶基-丁酮(NNK),需要代谢激活才能发挥其遗传毒性。第一步激活主要由细胞色素P450(CYP)家族催化。雌激素受体α(ERα)在肺部病理中起作用。它们之间的关联尚不清楚。在本研究中,我们探讨了CYP1B1和ERα在NNK诱导的肺癌发生中的关系及功能。分析了人肺癌组织和NNK诱导的A/J小鼠肺癌中CYP1B1和ERα的表达。使用细胞系NCI-H23和NCI-H460,采用各种细胞和分子方法进一步研究其作用机制。我们的体内实验表明,在NNK诱导的肺癌发生早期,CYP1B1和ERα过度表达。微阵列分析发现ERα参与细胞外信号调节激酶(ERK)/丝裂原活化蛋白激酶(MAPK)途径。NNK激活RAS/ERK/AP1,因为它显著增加了p-ERK、c-Fos和c-Jun的水平,但通过上调miR-21抑制了Ras/ERK/AP1的多个负调节因子Pdcd4、Spry1、Spry2和Btg2。CYP1B1小干扰RNA和ERK特异性抑制剂U0126均抑制了NNK介导的ERα上调,表明ERα在CYP1B1和ERK下游。ERK失活导致CYP1B1积累,表明CYP1B1在ERK激活上游。抑制ERK或ERα可降低NNK诱导的细胞增殖。阻断CYP1B1或ERα可诱导肺癌细胞凋亡。总体而言,NNK介导的ERα诱导是通过CYP1B1和ERK实现的,并促进肺癌发生。抑制CYP1B1、ERK或ERα可能会阻止肺癌细胞生长,这暗示了一种治疗肺癌的关键策略。

关键信息

吸烟致癌物NNK需要代谢激活才能发挥其遗传毒性。CYP1B1是催化NNK的酶。NNK激活CYP1B1和ERK以诱导ERα。抑制CYP1B1、ERK或ERα可阻止肺癌细胞生长。

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