首页> 美国卫生研究院文献>Cancer Biology Therapy >Small molecule schweinfurthins selectively inhibit cancer cell proliferation and mTOR/AKT signaling by interfering with trans-Golgi-network trafficking
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Small molecule schweinfurthins selectively inhibit cancer cell proliferation and mTOR/AKT signaling by interfering with trans-Golgi-network trafficking

机译:小分子schweinfurthins通过干扰反高尔基体网络运输来选择性抑制癌细胞增殖和mTOR / AKT信号传导

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摘要

Natural compound schweinfurthins are of considerable interest for novel therapy development because of their selective anti-proliferative activity against human cancer cells. We previously reported the isolation of highly active schweinfurthins E-H, and in the present study, mechanisms of the potent and selective anti-proliferation were investigated. We found that schweinfurthins preferentially inhibited the proliferation of PTEN deficient cancer cells by indirect inhibition of AKT phosphorylation. Mechanistically, schweinfurthins and their analogs arrested trans-Golgi-network trafficking, an intracellular vesicular trafficking system, resulting in the induction of endoplasmic reticulum stress and the suppression of both lipid raft-mediated PI3K activation and mTOR/RheB complex formation, which collectively led to an effective inhibition of mTOR/AKT signaling. The trans-Golgi-network traffic arresting effect of schweinfurthins was associated with their in vitro binding activity to oxysterol-binding proteins that are known to regulate intracellular vesicular trafficking. Moreover, schweinfurthins were found to be highly toxic toward PTEN-deficient B cell lymphoma cells, and displayed 2 orders of magnitude lower activity toward normal human peripheral blood mononuclear cells and primary fibroblasts in vitro. These results revealed a previously unrecognized role of schweinfurthins in regulating trans-Golgi-network trafficking, and linked mechanistically this cellular effect with mTOR/AKT signaling and with cancer cell survival and growth. Our findings suggest the schweinfurthin class of compounds as a novel approach to modulate oncogenic mTOR/AKT signaling for cancer treatment.
机译:天然化合物schweinfurthins因其对人癌细胞的选择性抗增殖活性而对新型疗法产生了极大的兴趣。我们先前报道了高活性的schweinfurthins E-H的分离,在本研究中,研究了有效的和选择性的抗增殖机制。我们发现,schweinfurthins通过间接抑制AKT磷酸化来优先抑制PTEN缺陷型癌细胞的增殖。从机理上讲,施韦因富汀及其类似物阻止了跨高尔基网络的运输,一种细胞内水泡运输系统,导致内质网应激的诱导并抑制了脂筏介导的PI3K活化和mTOR / RheB复合物的形成,共同导致有效抑制mTOR / AKT信号传导。 schweinfurthins的反高尔基网络交通阻止作用与其体外与已知可调节细胞内水泡运输的氧固醇结合蛋白的结合活性有关。此外,发现schweinfurthins对PTEN缺陷的B细胞淋巴瘤细胞具有高毒性,并且在体外对正常人外周血单核细胞和原代成纤维细胞的活性降低了2个数量级。这些结果揭示了以前未知的schweinfurthins在调节跨高尔基体网络运输中的作用,并将这种细胞效应与mTOR / AKT信号传导以及癌细胞的存活和生长机制性地联系起来。我们的发现表明,schweinfurthin类化合物是一种调节致癌性mTOR / AKT信号传导的新方法,可用于癌症治疗。

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