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首页> 外文期刊>Nature Communications >MNKs act as a regulatory switch for eIF4E1 and eIF4E3 driven mRNA translation in DLBCL
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MNKs act as a regulatory switch for eIF4E1 and eIF4E3 driven mRNA translation in DLBCL

机译:MNKs作为DLBCL中eIF4E1和eIF4E3驱动的mRNA翻译的调节开关

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摘要

The phosphorylation of eIF4E1 at serine 209 by MNK1 or MNK2 has been shown to initiate oncogenic mRNA translation, a process that favours cancer development and maintenance. Here, we interrogate the MNK-eIF4E axis in diffuse large B-cell lymphoma (DLBCL) and show a distinct distribution of MNK1 and MNK2 in germinal centre B-cell (GCB) and activated B-cell (ABC) DLBCL. Despite displaying a differential distribution in GCB and ABC, both MNKs functionally complement each other to sustain cell survival. MNK inhibition ablates eIF4E1 phosphorylation and concurrently enhances eIF4E3 expression. Loss of MNK protein itself downregulates total eIF4E1 protein level by reducing eIF4E1 mRNA polysomal loading without affecting total mRNA level or stability. Enhanced eIF4E3 expression marginally suppresses eIF4E1 -driven translation but exhibits a unique translatome that unveils a novel role for eIF4E3 in translation initiation. We propose that MNKs can modulate oncogenic translation by regulating eIF4E1 - eIF4E3 levels and activity in DLBCL.
机译:已经显示出MIF1或MNK2将sine 209处的eIF4E1磷酸化可以启动致癌的mRNA翻译,这一过程有利于癌症的发展和维持。在这里,我们询问弥漫性大B细胞淋巴瘤(DLBCL)中的MNK-eIF4E轴,并显示生发中心B细胞(GCB)和活化B细胞(ABC)DLBCL中MNK1和MNK2的明显分布。尽管在GCB和ABC中显示出不同的分布,但两个MNK在功能上相互补充以维持细胞存活。 MNK抑制消除eIF4E1磷酸化,并同时增强eIF4E3表达。 MNK蛋白本身的损失通过降低eIF4E1 mRNA多体负载而降低了总eIF4E1蛋白水平,而又不影响总mRNA水平或稳定性。增强的eIF4E3表达略微抑制了eIF4E1驱动的翻译,但展示了独特的翻译组,揭示了eIF4E3在翻译起始中的新作用。我们建议MNKs可以通过调节eIF4E1-eIF4E3的水平和DLBCL中的活性来调节致癌翻译。

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