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ROS 介导的 AKT/mTOR 信号通路的扩增导致 Foxo3(-/-) 小鼠发生骨髓增生性综合征。

ROS-mediated amplification of AKT/mTOR signalling pathway leads to myeloproliferative syndrome in Foxo3(-/-) mice.

机构信息

Department of Gene and Cell Medicine, Mount Sinai School of Medicine, New York, NY 10029, USA.

出版信息

EMBO J. 2010 Dec 15;29(24):4118-31. doi: 10.1038/emboj.2010.292. Epub 2010 Nov 26.

Abstract

Reactive oxygen species (ROS) participate in normal intracellular signalling and in many diseases including cancer and aging, although the associated mechanisms are not fully understood. Forkhead Box O (FoxO) 3 transcription factor regulates levels of ROS concentrations, and is essential for maintenance of hematopoietic stem cells. Here, we show that loss of Foxo3 causes a myeloproliferative syndrome with splenomegaly and increased hematopoietic progenitors (HPs) that are hypersensitive to cytokines. These mutant HPs contain increased ROS, overactive intracellular signalling through the AKT/mammalian target of rapamycin signalling pathway and relative deficiency of Lnk, a negative regulator of cytokine receptor signalling. In vivo treatment with ROS scavenger N-acetyl-cysteine corrects these biochemical abnormalities and relieves the myeloproliferation. Moreover, enforced expression of Lnk by retroviral transfer corrects the abnormal expansion of Foxo3(-/-) HPs in vivo. Our combined results show that loss of Foxo3 causes increased ROS accumulation in HPs. In turn, this inhibits Lnk expression that contributes to exaggerated cytokine responses that lead to myeloproliferation. Our findings could explain the mechanisms by which mutations that alter Foxo3 function induce malignancy. More generally, the work illustrates how deregulated ROS may contribute to malignant progression.

摘要

活性氧(ROS)参与正常的细胞内信号转导,并与包括癌症和衰老在内的许多疾病有关,尽管相关机制尚未完全阐明。叉头框 O(FoxO)3 转录因子调节 ROS 浓度水平,对于维持造血干细胞至关重要。在这里,我们发现 Foxo3 的缺失会导致骨髓增生性综合征,伴有脾肿大和造血祖细胞(HPs)增加,这些 HPs 对细胞因子更敏感。这些突变的 HPs 含有增加的 ROS、通过 AKT/雷帕霉素靶蛋白信号通路过度激活的细胞内信号以及负调节细胞因子受体信号的 Lnk 的相对缺乏。体内用 ROS 清除剂 N-乙酰半胱氨酸治疗可纠正这些生化异常并缓解骨髓增生。此外,通过逆转录病毒转导强制表达 Lnk 可纠正 Foxo3(-/-)HP 体内的异常扩张。我们的综合结果表明,Foxo3 的缺失会导致 HPs 中 ROS 积累增加。反过来,这会抑制 Lnk 的表达,从而导致细胞因子反应过度,导致骨髓增生。我们的发现可以解释改变 Foxo3 功能的突变如何诱导恶性肿瘤的机制。更普遍地说,这项工作说明了失调的 ROS 如何可能导致恶性进展。

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