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线粒体翻译途径对弥漫性大B细胞淋巴瘤亚群生存的不同贡献。

Differential contribution of the mitochondrial translation pathway to the survival of diffuse large B-cell lymphoma subsets.

作者信息

Norberg Erik, Lako Ana, Chen Pei-Hsuan, Stanley Illana A, Zhou Feng, Ficarro Scott B, Chapuy Bjoern, Chen Linfeng, Rodig Scott, Shin Donghyuk, Choi Dong Wook, Lee Sangho, Shipp Margaret A, Marto Jarrod A, Danial Nika N

机构信息

Department of Cancer Biology, Dana-Farber Cancer Institute, Boston, MA 02115, USA.

Blais Proteomics Center, Dana-Farber Cancer Institute, Boston, MA 02115, USA.

出版信息

Cell Death Differ. 2017 Feb;24(2):251-262. doi: 10.1038/cdd.2016.116. Epub 2016 Oct 21.

Abstract

Diffuse large B-cell lymphomas (DLBCLs) are a highly heterogeneous group of tumors in which subsets share molecular features revealed by gene expression profiles and metabolic fingerprints. While B-cell receptor (BCR)-dependent DLBCLs are glycolytic, OxPhos-DLBCLs rely on mitochondrial energy transduction and nutrient utilization pathways that provide pro-survival benefits independent of BCR signaling. Integral to these metabolic distinctions is elevated mitochondrial electron transport chain (ETC) activity in OxPhos-DLBCLs compared with BCR-DLBCLs, which is linked to greater protein abundance of ETC components. To gain insights into molecular determinants of the selective increase in ETC activity and dependence on mitochondrial energy metabolism in OxPhos-DLBCLs, we examined the mitochondrial translation pathway in charge of the synthesis of mitochondrial DNA encoded ETC subunits. Quantitative mass spectrometry identified increased expression of mitochondrial translation factors in OxPhos-DLBCL as compared with the BCR subtype. Biochemical and functional assays indicate that the mitochondrial translation pathway is required for increased ETC activity and mitochondrial energy reserves in OxPhos-DLBCL. Importantly, molecular depletion of several mitochondrial translation proteins using RNA interference or pharmacological perturbation of the mitochondrial translation pathway with the FDA-approved inhibitor tigecycline (Tigecyl) is selectively toxic to OxPhos-DLBCL cell lines and primary tumors. These findings provide additional molecular insights into the metabolic characteristics of OxPhos-DLBCLs, and mark the mitochondrial translation pathway as a potential therapeutic target in these tumors.

摘要

弥漫性大B细胞淋巴瘤(DLBCL)是一组高度异质性的肿瘤,其中一些亚群具有通过基因表达谱和代谢指纹揭示的分子特征。虽然依赖B细胞受体(BCR)的DLBCL具有糖酵解特性,但氧化磷酸化型DLBCL(OxPhos-DLBCL)依赖线粒体能量转导和营养利用途径,这些途径提供独立于BCR信号的促生存益处。与BCR-DLBCL相比,OxPhos-DLBCL中线粒体电子传递链(ETC)活性升高是这些代谢差异的一个重要组成部分,这与ETC组分的蛋白质丰度增加有关。为了深入了解OxPhos-DLBCL中ETC活性选择性增加和对线粒体能量代谢依赖性的分子决定因素,我们研究了负责线粒体DNA编码的ETC亚基合成的线粒体翻译途径。定量质谱分析表明,与BCR亚型相比,OxPhos-DLBCL中线粒体翻译因子的表达增加。生化和功能分析表明,线粒体翻译途径是OxPhos-DLBCL中ETC活性增加和线粒体能量储备所必需的。重要的是,使用RNA干扰对几种线粒体翻译蛋白进行分子耗竭,或用FDA批准的抑制剂替加环素(Tigecyl)对线粒体翻译途径进行药理学干扰,对OxPhos-DLBCL细胞系和原发性肿瘤具有选择性毒性。这些发现为OxPhos-DLBCL的代谢特征提供了更多的分子见解,并将线粒体翻译途径标记为这些肿瘤的潜在治疗靶点。

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