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5-Aminoimidazole-4-carboxamide-1-β-4-ribofuranoside (AICAR) enhances the efficacy of rapamycin in human cancer cells

机译:5-氨基咪唑-4-甲酰胺-1-β-4-呋喃呋喃糖苷(AICAR)增强雷帕霉素在人类癌细胞中的功效

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摘要

mTOR – the mammalian/mechanistic target of rapamycin – has been implicated as a key signaling node for promoting survival of cancer cells. However, clinical trials that have targeted mTOR with rapamycin or rapamycin analogs have had minimal impact. In spite of the high specificity of rapamycin for mTOR, the doses needed to suppress key mTOR substrates have proved toxic. We report here that rapamycin when combined with AICAR – a compound that activates AMP-activated protein kinase makes rapamycin cytotoxic rather than cytostatic at doses that are tolerated clinically. AICAR by itself is able to suppress mTOR complex 1 (mTORC1), but also stimulates a feedback activation of mTORC2, which activates the survival kinase Akt. However, AICAR also suppresses production of phosphatidic acid (PA), which interacts with mTOR in a manner that is competitive with rapamycin. The reduced level of PA sensitizes mTORC2 to rapamycin at tolerable nano-molar doses leading reduced Akt phosphorylation and apoptosis. This study reveals how the use of AICAR enhances the efficacy of rapamycin such that rapamycin at low nano-molar doses can suppress mTORC2 and induce apoptosis in human cancer cells at doses that are clinically tolerable.
机译:mTOR –雷帕霉素的哺乳动物/机制靶点–被认为是促进癌细胞存活的关键信号转导点。但是,以雷帕霉素或雷帕霉素类似物为靶标的mTOR的临床试验影响最小。尽管雷帕霉素对mTOR有很高的特异性,但抑制关键mTOR底物所需的剂量已证明具有毒性。我们在这里报告说,雷帕霉素与AICAR(一种能激活AMP激活的蛋白激酶的化合物)联合使用时,在临床上可耐受的剂量下使雷帕霉素具有细胞毒性而不是具有细胞抑制作用。 AICAR本身可以抑制mTOR复合物1(mTORC1),但也可以刺激mTORC2的反馈激活,从而激活生存激酶Akt。但是,AICAR还抑制了磷脂酸(PA)的生成,该磷脂酸与mTOR相互作用的方式与雷帕霉素竞争。 PA的降低水平以可接受的纳摩尔剂量使mTORC2对雷帕霉素敏感,从而导致Akt磷酸化和细胞凋亡减少。这项研究揭示了AICAR的使用如何增强雷帕霉素的功效,从而以低纳摩尔剂量的雷帕霉素可以抑制mTORC2并在临床上可耐受的剂量下诱导人癌细胞的凋亡。

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