首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Structure-Activity Analysis of Niclosamide Reveals Potential Role for Cytoplasmic pH in Control of Mammalian Target of Rapamycin Complex 1 (mTORC1) Signaling
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Structure-Activity Analysis of Niclosamide Reveals Potential Role for Cytoplasmic pH in Control of Mammalian Target of Rapamycin Complex 1 (mTORC1) Signaling

机译:Niclosamide的结构活性分析揭示了胞质pH在雷帕霉素复合物1(mTORC1)信号的哺乳动物靶标控制中的潜在作用。

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摘要

Mammalian target of rapamycin complex 1 (mTORC1) signaling is frequently dysregulated in cancer. Inhibition of mTORC1 is thus regarded as a promising strategy in the treatment of tumors with elevated mTORC1 activity. We have recently identified niclosamide (a Food and Drug Administration-approved antihelminthic drug) as an inhibitor of mTORC1 signaling. In the present study, we explored possible mechanisms by which niclosamide may inhibit mTORC1 signaling. We tested whether niclosamide interferes with signaling cascades upstream of mTORC1, the catalytic activity of mTOR, or mTORC1 assembly. We found that niclosamide does not impair PI3K/Akt signaling, nor does it inhibit mTORC1 kinase activity. We also found that niclosamide does not interfere with mTORC1 assembly. Previous studies in helminths suggest that niclosamide disrupts pH homeostasis of the parasite. This prompted us to investigate whether niclosamide affects the pH balance of cancer cells. Experiments in both breast cancer cells and cell-free systems demonstrated that niclosamide possesses protonophoric activity in cells and in vitro. In cells, niclosamide dissipated protons (down their concentration gradient) from lysosomes to the cytosol, effectively lowering cytoplasmic pH. Notably, analysis of five niclosamide analogs revealed that the structural features of niclosamide required for protonophoric activity are also essential for mTORC1 inhibition. Furthermore, lowering cytoplasmic pH by means other than niclosamide treatment (e.g. incubation with propionic acid or bicarbonate withdrawal) recapitulated the inhibitory effects of niclosamide on mTORC1 signaling, lending support to a possible role for cytoplasmic pH in the control of mTORC1. Our data illustrate a potential mechanism for chemical inhibition of mTORC1 signaling involving modulation of cytoplasmic pH.
机译:雷帕霉素复合物1(mTORC1)信号的哺乳动物目标经常在癌症中失调。因此,抑制mTORC1被认为是治疗mTORC1活性升高的肿瘤的一种有前途的策略。我们最近确定了烟酰胺(一种食品和药物管理局批准的抗蠕虫药)作为mTORC1信号的抑制剂。在本研究中,我们探讨了烟酰胺可能抑制mTORC1信号传导的可能机制。我们测试了烟酰胺是否干扰mTORC1上游的信号级联,mTOR或mTORC1组装的催化活性。我们发现烟酰胺不会损害PI3K / Akt信号传导,也不会抑制mTORC1激酶活性。我们还发现,烟酰胺不会干扰mTORC1的组装。蠕虫的先前研究表明,烟酰胺可能破坏寄生虫的pH稳态。这促使我们研究烟酰胺是否会影响癌细胞的pH平衡。在乳腺癌细胞和无细胞系统中进行的实验表明,烟酰胺在细胞和体外均具有质子活性。在细胞中,烟酰胺使质子从溶酶体消散到细胞质中(降低浓度梯度),有效降低了细胞质的pH值。值得注意的是,对五个尼克洛酰胺类似物的分析表明,质子活性所需的尼克洛酰胺的结构特征对于mTORC1抑制也是必不可少的。此外,通过烟酰胺酰胺处理以外的其他方法(例如,丙酸孵育或碳酸氢盐撤药)降低细胞质pH,可以概括出烟酰胺对mTORC1信号转导的抑制作用,从而为细胞质pH在控制mTORC1中的可能作用提供了支持。我们的数据说明了化学抑制mTORC1信号传导涉及调节细胞质pH的潜在机制。

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