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The novel combination of dual mTOR inhibitor AZD2014 and pan-PIM inhibitor AZD1208 inhibits growth in acute myeloid leukemia via HSF pathway suppression

机译:mTOR抑制剂AZD2014和pan-PIM抑制剂AZD1208的新型组合通过HSF途径抑制来抑制急性髓细胞性白血病的生长

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摘要

Mammalian target of rapamycin (mTOR) signaling is a critical pathway in the biology of acute myeloid leukemia (AML). Proviral integration site for moloney murine leukemia virus (PIM) serine/threonine kinase signaling takes part in various pathways exerting tumorigenic properties. We hypothesized that the combination of a PIM kinase inhibitor with an mTOR inhibitor might have complementary growth-inhibitory effects against AML. The simultaneous inhibition of the PIM kinase by pan-PIM inhibitor AZD1208 and of mTOR by selective mTORC1/2 dual inhibitor AZD2014 exerted anticancer properties in AML cell lines and in cells derived from primary AML samples with or without supportive stromal cell co-culture, leading to suppressed proliferation and increased apoptosis. The combination of AZD1208 and AZD2014 rapidly activated AMPKα, a negative regulator of translation machinery through mTORC1/2 signaling in AML cells; profoundly inhibited AKT and 4EBP1 activation; and suppressed polysome formation. Inhibition of both mTOR and PIM counteracted induction of heat-shock family proteins, uncovering the master negative regulation of heat shock factor 1 (HSF1), the dominant transcription factor controlling cellular stress responses. The novel combination of the dual mTOR inhibitor and pan-PIM inhibitor synergistically inhibited AML growth by effectively reducing protein synthesis through heat shock factor pathway suppression.
机译:雷帕霉素(mTOR)信号的哺乳动物目标是急性髓细胞白血病(AML)生物学中的关键途径。莫洛尼鼠白血病病毒(PIM)丝氨酸/苏氨酸激酶信号转导的前病毒整合位点参与发挥致瘤特性的各种途径。我们假设PIM激酶抑制剂与mTOR抑制剂的组合可能对AML具有互补的生长抑制作用。 pan-PIM抑制剂AZD1208同时抑制PIM激酶,选择性mTORC1 / 2双重抑制剂AZD2014同时抑制mTOR,在AML细胞系以及原代AML样品的细胞中(无论是否支持基质细胞共培养)均具有抗癌特性,导致抑制增殖并增加凋亡。 AZD1208和AZD2014的组合通过AML细胞中的mTORC1 / 2信号传导迅速激活了AMPKα,AMPKα是翻译机器的负调节剂。强烈抑制AKT和4EBP1激活;并抑制多核糖体的形成。对mTOR和PIM的抑制均抵消了热休克家族蛋白的诱导作用,从而揭示了热休克因子1(HSF1)的主要负调控作用,HSF1是控制细胞应激反应的主要转录因子。双重mTOR抑制剂和pan-PIM抑制剂的新型组合通过热休克因子途径抑制有效降低蛋白质合成,从而协同抑制AML的生长。

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