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PML-RARα enhances constitutive autophagic activity through inhibiting the Akt/mTOR pathway

机译:PML-RARα通过抑制Akt / mTOR途径增强组成型自噬活性

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摘要

Autophagy is a highly conserved, closely regulated homeostatic cellular activity that allows for the bulk degradation of long-lived proteins and cytoplasmic organelles. Its roles in cancer initiation and progression and in determining the response of tumor cells to anticancer therapy are complicated, and only limited investigation has been conducted on the potential significance of autophagy in the pathogenesis and therapeutic response of acute myeloid leukemia. Here we demonstrate that the inducible or transfected expression of the acute promyelocytic leukemia (APL)-specific PML-RARα, but not PLZF-RARα or NPM-RARα, fusion protein upregulates constitutive autophagy activation in leukemic and nonleukemic cells, as evaluated by hallmarks for autophagy including transmission electron microscopy. The significant increase in autophagic activity is also found in the leukemic cells-infiltrated bone marrow and spleen from PML-RARα-transplanted leukemic mice. The autophagy inhibitor 3-methyladenine significantly abrogates the autophagic events upregulated by PML-RARα, while the autophagic flux assay reveals that the fusion protein induces autophagy by increasing the on-rate of autophagic sequestration. Furthermore, this modulation of autophagy by PML-RARα is possibly mediated by a decreased activation of the Akt/mTOR pathway. Finally, we also show that autophagy contributes to the anti-apoptotic function of the PML-RARα protein. Given the critical role of the PML-RARα oncoprotein in APL pathogenesis, this study suggests an important role of autophagy in the development and treatment of this disease.
机译:自噬是一种高度保守的,受严格调节的稳态细胞活性,可以使长寿蛋白和细胞质细胞器大量降解。它在癌症的发生和发展中以及在确定肿瘤细胞对抗癌治疗的反应中的作用是复杂的,并且关于自噬在急性髓样白血病的发病机理和治疗反应中的潜在意义仅进行了有限的研究。在这里,我们证明了急性早幼粒细胞白血病(APL)特异性PML-RARα的可诱导或转染表达,但PLZF-RARα或NPM-RARα并非如此,融合蛋白可上调白血病和非白血病细胞的组成型自噬激活,如通过标记所评估的自噬包括透射电子显微镜。自移植了PML-RARα的白血病小鼠的白血病细胞浸润的骨髓和脾脏中也发现自噬活性显着增加。自噬抑制剂3-甲基腺嘌呤显着消除了由PML-RARα上调的自噬事件,而自噬通量测定表明融合蛋白通过增加自噬螯合的开启速率诱导自噬。此外,PML-RARα对自噬的这种调节可能是由Akt / mTOR途径的激活减少所介导的。最后,我们还表明自噬有助于PML-RARα蛋白的抗凋亡功能。考虑到PML-RARα癌蛋白在APL发病机理中的关键作用,这项研究表明自噬在该疾病的发生和治疗中具有重要作用。

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