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mTORC1 与 MNK2 之间的相互信号转导控制细胞生长和肿瘤发生。

Reciprocal signaling between mTORC1 and MNK2 controls cell growth and oncogenesis.

机构信息

Lifelong Health Theme, South Australian Health and Medical Research Institute, North Terrace, Adelaide, SA, 5000, Australia.

Medical Research Council Toxicology Unit, Leicester, UK.

出版信息

Cell Mol Life Sci. 2021 Jan;78(1):249-270. doi: 10.1007/s00018-020-03491-1. Epub 2020 Mar 13.

Abstract

eIF4E plays key roles in protein synthesis and tumorigenesis. It is phosphorylated by the kinases MNK1 and MNK2. Binding of MNKs to eIF4G enhances their ability to phosphorylate eIF4E. Here, we show that mTORC1, a key regulator of mRNA translation and oncogenesis, directly phosphorylates MNK2 on Ser74. This suppresses MNK2 activity and impairs binding of MNK2 to eIF4G. These effects provide a novel mechanism by which mTORC1 signaling impairs the function of MNK2 and thereby decreases eIF4E phosphorylation. MNK2[S74A] knock-in cells show enhanced phosphorylation of eIF4E and S6K1 (i.e., increased mTORC1 signaling), enlarged cell size, and increased invasive and transformative capacities. MNK2[Ser74] phosphorylation was inversely correlated with disease progression in human prostate tumors. MNK inhibition exerted anti-proliferative effects in prostate cancer cells in vitro. These findings define a novel feedback loop whereby mTORC1 represses MNK2 activity and oncogenic signaling through eIF4E phosphorylation, allowing reciprocal regulation of these two oncogenic pathways.

摘要

eIF4E 在蛋白质合成和肿瘤发生中发挥关键作用。它被 MNK1 和 MNK2 激酶磷酸化。MNKs 与 eIF4G 的结合增强了它们磷酸化 eIF4E 的能力。在这里,我们表明,mTORC1 是 mRNA 翻译和致癌作用的关键调节剂,可直接在 Ser74 上磷酸化 MNK2。这抑制了 MNK2 的活性并损害了 MNK2 与 eIF4G 的结合。这些效应提供了一种新的机制,通过该机制,mTORC1 信号抑制 MNK2 的功能,从而减少 eIF4E 的磷酸化。MNK2[S74A] 敲入细胞显示 eIF4E 和 S6K1 的磷酸化增强(即,增加了 mTORC1 信号),细胞体积增大,侵袭性和转化能力增强。MNK2[Ser74] 的磷酸化与人类前列腺肿瘤的疾病进展呈负相关。MNK 抑制在体外对前列腺癌细胞具有抗增殖作用。这些发现定义了一个新的反馈回路,其中 mTORC1 通过 eIF4E 磷酸化抑制 MNK2 活性和致癌信号,从而允许这两种致癌途径的相互调节。

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