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线粒体翻译机制作为Myc驱动淋巴瘤的治疗靶点。

The mitochondrial translation machinery as a therapeutic target in Myc-driven lymphomas.

作者信息

D'Andrea Aleco, Gritti Ilaria, Nicoli Paola, Giorgio Marco, Doni Mirko, Conti Annalisa, Bianchi Valerio, Casoli Lucia, Sabò Arianna, Mironov Alexandre, Beznoussenko Galina V, Amati Bruno

机构信息

Department of Experimental Oncology, European Institute of Oncology, Milan, Italy.

Present address: IRCCS San Raffaele, Functional Genomics of Cancer Unit, Division of Experimental Oncology, Milan, Italy.

出版信息

Oncotarget. 2016 Nov 8;7(45):72415-72430. doi: 10.18632/oncotarget.11719.

Abstract

The oncogenic transcription factor Myc is required for the progression and maintenance of diverse tumors. This has led to the concept that Myc itself, Myc-activated gene products, or associated biological processes might constitute prime targets for cancer therapy. Here, we present an in vivo reverse-genetic screen targeting a set of 241 Myc-activated mRNAs in mouse B-cell lymphomas, unraveling a critical role for the mitochondrial ribosomal protein (MRP) Ptcd3 in tumor maintenance. Other MRP-coding genes were also up regulated in Myc-induced lymphoma, pointing to a coordinate activation of the mitochondrial translation machinery. Inhibition of mitochondrial translation with the antibiotic Tigecycline was synthetic-lethal with Myc activation, impaired respiratory activity and tumor cell survival in vitro, and significantly extended lifespan in lymphoma-bearing mice. We have thus identified a novel Myc-induced metabolic dependency that can be targeted by common antibiotics, opening new therapeutic perspectives in Myc-overexpressing tumors.

摘要

致癌转录因子Myc是多种肿瘤进展和维持所必需的。这导致了一种概念,即Myc本身、Myc激活的基因产物或相关生物学过程可能构成癌症治疗的主要靶点。在此,我们在小鼠B细胞淋巴瘤中针对一组241个Myc激活的mRNA进行了体内反向遗传筛选,揭示了线粒体核糖体蛋白(MRP)Ptcd3在肿瘤维持中的关键作用。其他MRP编码基因在Myc诱导的淋巴瘤中也上调,表明线粒体翻译机制的协同激活。用抗生素替加环素抑制线粒体翻译与Myc激活具有合成致死性,损害体外呼吸活性和肿瘤细胞存活,并显著延长荷瘤小鼠的寿命。因此,我们确定了一种新的Myc诱导的代谢依赖性,可被常用抗生素靶向,为Myc过表达肿瘤开辟了新的治疗前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a316/5341918/c33569dc8e3b/oncotarget-07-72415-g001.jpg

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