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在小鼠淋巴瘤模型中,对翻译起始的治疗性抑制可调节化学敏感性。

Therapeutic suppression of translation initiation modulates chemosensitivity in a mouse lymphoma model.

作者信息

Bordeleau Marie-Eve, Robert Francis, Gerard Baudouin, Lindqvist Lisa, Chen Samuel M H, Wendel Hans-Guido, Brem Brigitte, Greger Harald, Lowe Scott W, Porco John A, Pelletier Jerry

机构信息

Department of Biochemistry, McGill University, Montreal, Quebec, Canada.

出版信息

J Clin Invest. 2008 Jul;118(7):2651-60. doi: 10.1172/JCI34753.

Abstract

Disablement of cell death programs in cancer cells contributes to drug resistance and in some cases has been associated with altered translational control. As eukaryotic translation initiation factor 4E (eIF4E) cooperates with c-Myc during lymphomagenesis, induces drug resistance, and is a genetic modifier of the rapamycin response, we have investigated the effect of dysregulation of the ribosome recruitment phase of translation initiation on tumor progression and chemosensitivity. eIF4E is a subunit of eIF4F, a complex that stimulates ribosome recruitment during translation initiation by delivering the DEAD-box RNA helicase eIF4A to the 5' end of mRNAs. eIF4A is thought to prepare a ribosome landing pad on mRNA templates for incoming 40S ribosomes (and associated factors). Using small molecule screening, we found that cyclopenta[b]benzofuran flavaglines, a class of natural products, modulate eIF4A activity and inhibit translation initiation. One member of this class of compounds, silvestrol, was able to enhance chemosensitivity in a mouse lymphoma model in which carcinogenesis is driven by phosphatase and tensin homolog (PTEN) inactivation or elevated eIF4E levels. These results establish that targeting translation initiation can restore drug sensitivity in vivo and provide an approach to modulating chemosensitivity.

摘要

癌细胞中细胞死亡程序的失活会导致耐药性,在某些情况下还与翻译控制改变有关。由于真核生物翻译起始因子4E(eIF4E)在淋巴瘤发生过程中与c-Myc协同作用,诱导耐药性,并且是雷帕霉素反应的遗传修饰因子,我们研究了翻译起始核糖体募集阶段失调对肿瘤进展和化学敏感性的影响。eIF4E是eIF4F的一个亚基,eIF4F是一个在翻译起始过程中通过将DEAD盒RNA解旋酶eIF4A递送至mRNA 5'端来刺激核糖体募集的复合物。eIF4A被认为是在mRNA模板上为即将到来的40S核糖体(及相关因子)准备一个核糖体着陆平台。通过小分子筛选,我们发现一类天然产物环戊并[b]苯并呋喃类黄酮化合物可调节eIF4A活性并抑制翻译起始。这类化合物中的一个成员,silvestrol,能够在由磷酸酶和张力蛋白同源物(PTEN)失活或eIF4E水平升高驱动致癌作用的小鼠淋巴瘤模型中增强化学敏感性。这些结果表明,靶向翻译起始可以在体内恢复药物敏感性,并提供一种调节化学敏感性的方法。

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