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Noxa/Mcl-1轴的改变决定了小细胞肺癌对BH3模拟物ABT-737的敏感性。

Alterations in the Noxa/Mcl-1 axis determine sensitivity of small cell lung cancer to the BH3 mimetic ABT-737.

作者信息

Hauck Paula, Chao Bo H, Litz Julie, Krystal Geoffrey W

机构信息

Department of Medicine, Virginia Commonwealth Universityh and McGuire Veterans Affairs Medical Center (111K), 1201 Broad Rock Boulevard, Richmond, VA 23249, USA.

出版信息

Mol Cancer Ther. 2009 Apr;8(4):883-92. doi: 10.1158/1535-7163.MCT-08-1118.

Abstract

To understand the molecular basis for variable sensitivity to the BH3 mimetic drug ABT-737, the abundance of Bcl-2 family members was assayed in a panel of small cell lung cancer cell lines whose sensitivity varied over a 2-log range. Elevated Noxa and Bcl-2 levels directly correlated with sensitivity to ABT-737, whereas Mcl-1 levels were similar in all cell lines tested regardless of sensitivity. Transgenically enforced expression of Noxa but not Bcl-2 resulted in increased sensitivity to ABT-737 in multiple cell lines. This increase was especially pronounced in the H209 cell line in which expression of Noxa resulted in a proportionate decline in Mcl-1 expression. Although overexpression of Noxa enhanced sensitivity of the H526 and H82 cell lines to ABT-737, it did not result in altered Mcl-1 levels. Similarly, small interfering RNA-mediated knockdown of Noxa expression in the H146 cell line, which increased resistance to ABT-737, did not result in altered Mcl-1 levels. Therefore, three of four cell lines studied failed to show Noxa-mediated regulation of Mcl-1 expression. However, despite failure to regulate Mcl-1 levels, Noxa blocked binding of Bim to Mcl-1 following its release from Bcl-2 by ABT-737. Finally, we observed that a 24-hour incubation of the H526 and WBA cell lines with ABT-737 resulted in increased Noxa expression, suggesting that Noxa may play a direct role in ABT-737-mediated apoptosis. These results indicate that Noxa expression is the critical determinant of ABT-737 sensitivity and loss of Noxa-mediated regulation of Mcl-1 expression may be an important feature of small cell lung cancer biology.

摘要

为了解对BH3模拟药物ABT-737敏感性不同的分子基础,我们检测了一组小细胞肺癌细胞系中Bcl-2家族成员的丰度,这些细胞系的敏感性在2个对数范围内有所不同。Noxa和Bcl-2水平升高与对ABT-737的敏感性直接相关,而无论敏感性如何,所有测试细胞系中的Mcl-1水平均相似。在多个细胞系中,转基因强制表达Noxa而非Bcl-2会导致对ABT-737的敏感性增加。这种增加在H209细胞系中尤为明显,在该细胞系中Noxa的表达导致Mcl-1表达成比例下降。虽然Noxa的过表达增强了H526和H82细胞系对ABT-737的敏感性,但并未导致Mcl-1水平改变。同样,在对ABT-737耐药性增加的H146细胞系中,小干扰RNA介导的Noxa表达敲低并未导致Mcl-1水平改变。因此,所研究的四个细胞系中有三个未显示Noxa介导的Mcl-1表达调控。然而,尽管未能调控Mcl-1水平,但Noxa在ABT-737使Bim从Bcl-2释放后,会阻止Bim与Mcl-1结合。最后,我们观察到H526和WBA细胞系与ABT-737孵育24小时会导致Noxa表达增加,这表明Noxa可能在ABT-737介导的凋亡中起直接作用。这些结果表明,Noxa表达是ABT-737敏感性的关键决定因素,而Noxa介导的Mcl-1表达调控缺失可能是小细胞肺癌生物学的一个重要特征。

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