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在已建立的细胞系和原代人白血病细胞中,PEITC介导的mRNA翻译抑制与mTORC1的抑制及eIF2α磷酸化增加均相关。

PEITC-mediated inhibition of mRNA translation is associated with both inhibition of mTORC1 and increased eIF2α phosphorylation in established cell lines and primary human leukemia cells.

作者信息

Yeomans Alison, Lemm Elizabeth, Wilmore Sarah, Cavell Breeze E, Valle-Argos Beatriz, Krysov Sergey, Hidalgo Marina Sanchez, Leonard Elodie, Willis Anne E, Forconi Francesco, Stevenson Freda K, Steele Andrew J, Coldwell Mark J, Packham Graham

机构信息

Cancer Research UK Centre, Faculty of Medicine, University of Southampton, Southampton, UK.

Current Address: Public Health England, Porton Down, Salisbury, UK.

出版信息

Oncotarget. 2016 Nov 15;7(46):74807-74819. doi: 10.18632/oncotarget.11655.

Abstract

Increased mRNA translation drives carcinogenesis and is an attractive target for the development of new anti-cancer drugs. In this work, we investigated effects of phenethylisothiocyanate (PEITC), a phytochemical with chemopreventive and anti-cancer activity, on mRNA translation. PEITC rapidly inhibited global mRNA translation in human breast cancer-derived MCF7 cells and mouse embryonic fibroblasts (MEFs). In addition to the known inhibitory effects of PEITC on mTORC1 activity, we demonstrate that PEITC increased eIF2α phosphorylation. PEITC also increased formation of stress granules which are typically associated with eIF2α phosphorylation and accumulation of translationally stalled mRNAs. Analysis of genetically modified MEFs demonstrated that optimal inhibition of global mRNA translation by PEITC was dependent on eIF2α phosphorylation, but not mTORC1 inhibition. We extended this study into primary leukemic B cells derived from patients with chronic lymphocytic leukaemia (CLL). CLL cells were stimulated in vitro with anti-IgM to mimic binding of antigen, a major driver of this leukemia. In CLL cells, PEITC increased eIF2α phosphorylation, inhibited anti-IgM-induced mTORC1 activation and decreased both basal and anti-IgM-induced global mRNA translation. PEITC also inhibited transcription and translation of MYC mRNA and accumulation of the MYC oncoprotein, in anti-IgM-stimulated cells. Moreover, treatment of CLL cells with PEITC and the BTK kinase inhibitor ibrutinib decreased anti-IgM-induced translation and induced cell death to a greater extent than either agent alone. Therefore, PEITC can inhibit both global and mRNA specific translation (including MYC) via effects on multiple regulatory pathways. Inhibition of mRNA translation may contribute to the chemopreventive and anti-cancer effects of PEITC.

摘要

mRNA翻译增加驱动癌症发生,是开发新型抗癌药物的一个有吸引力的靶点。在本研究中,我们研究了具有化学预防和抗癌活性的植物化学物质异硫氰酸苯乙酯(PEITC)对mRNA翻译的影响。PEITC能迅速抑制人乳腺癌来源的MCF7细胞和小鼠胚胎成纤维细胞(MEF)中的整体mRNA翻译。除了PEITC对mTORC1活性的已知抑制作用外,我们还证明PEITC增加了eIF2α的磷酸化。PEITC还增加了应激颗粒的形成,应激颗粒通常与eIF2α磷酸化以及翻译停滞的mRNA积累有关。对基因改造的MEF进行分析表明,PEITC对整体mRNA翻译的最佳抑制依赖于eIF2α磷酸化,而非mTORC1抑制。我们将这项研究扩展到了来自慢性淋巴细胞白血病(CLL)患者的原发性白血病B细胞。用抗IgM体外刺激CLL细胞以模拟抗原结合,抗原是这种白血病的主要驱动因素。在CLL细胞中,PEITC增加了eIF2α磷酸化,抑制了抗IgM诱导的mTORC1激活,并降低了基础和抗IgM诱导的整体mRNA翻译。在抗IgM刺激的细胞中,PEITC还抑制了MYC mRNA的转录和翻译以及MYC癌蛋白的积累。此外,用PEITC和布鲁顿酪氨酸激酶(BTK)抑制剂依鲁替尼处理CLL细胞,比单独使用任何一种药物都能更大程度地降低抗IgM诱导的翻译并诱导细胞死亡。因此,PEITC可通过对多种调节途径的作用来抑制整体和mRNA特异性翻译(包括MYC)。mRNA翻译的抑制可能有助于PEITC的化学预防和抗癌作用。

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