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mTORC1是致癌性信号素3A信号传导的关键介质。

mTORC1 is a critical mediator of oncogenic Semaphorin3A signaling.

作者信息

Yamada Daisuke, Kawahara Kohichi, Maeda Takehiko

机构信息

Department of Pharmacology, Faculty of Pharmacy, Niigata University of Pharmacy and Applied Life Sciences, 265-1 Higashijima, Akiha-ku, Niigata-shi, Niigata-ken 956-8603, Japan.

Department of Pharmacology, Faculty of Pharmacy, Niigata University of Pharmacy and Applied Life Sciences, 265-1 Higashijima, Akiha-ku, Niigata-shi, Niigata-ken 956-8603, Japan.

出版信息

Biochem Biophys Res Commun. 2016 Aug 5;476(4):475-480. doi: 10.1016/j.bbrc.2016.05.147. Epub 2016 May 28.

Abstract

Aberration of signaling pathways by genetic mutations or alterations in the surrounding tissue environments can result in tumor development or metastasis. However, signaling molecules responsible for these processes have not been completely elucidated. Here, we used mouse Lewis lung carcinoma cells (LLC) to explore the mechanism by which the oncogenic activity of Semaphorin3A (Sema3A) signaling is regulated. Sema3A knockdown by shRNA did not affect apoptosis, but decreased cell proliferation in LLCs; both the mammalian target of rapamycin complex 1 (mTORC1) level and glycolytic activity were also decreased. In addition, Sema3A knockdown sensitized cells to inhibition of oxidative phosphorylation by oligomycin, but conferred resistance to decreased cell viability induced by glucose starvation. Furthermore, recombinant SEMA3A rescued the attenuation of cell proliferation and glycolytic activity in LLCs after Sema3A knockdown, whereas mTORC1 inhibition by rapamycin completely counteracted this effect. These results demonstrate that Sema3A signaling exerts its oncogenic effect by promoting an mTORC1-mediated metabolic shift from oxidative phosphorylation to aerobic glycolysis.

摘要

基因突变或周围组织环境的改变导致的信号通路异常可引发肿瘤发展或转移。然而,负责这些过程的信号分子尚未完全阐明。在此,我们使用小鼠Lewis肺癌细胞(LLC)来探究信号素3A(Sema3A)信号致癌活性的调控机制。通过短发夹RNA(shRNA)敲低Sema3A并不影响细胞凋亡,但会降低LLC细胞的增殖;雷帕霉素复合物1(mTORC1)水平和糖酵解活性也会降低。此外,敲低Sema3A使细胞对寡霉素抑制氧化磷酸化敏感,但赋予细胞对葡萄糖饥饿诱导的细胞活力降低的抗性。此外,重组SEMA3A挽救了敲低Sema3A后LLC细胞增殖和糖酵解活性的减弱,而雷帕霉素抑制mTORC1则完全抵消了这种作用。这些结果表明,Sema3A信号通过促进mTORC1介导的从氧化磷酸化到有氧糖酵解的代谢转变发挥其致癌作用。

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