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The PKR-Like Endoplasmic Reticulum Kinase Promotes the Dissemination of Myc-Induced Leukemic Cells

机译:pkr样内质网激酶促进了Myc诱导的白血病细胞的播种

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摘要

Hyperactive oncogenic Myc stimulates protein synthesis that induces the unfolded protein response, which requires the function of the eukaryotic translation initiation factor 2-alpha kinase 3, also known as protein kinase R (PKR)-like endoplasmic reticulum kinase (PERK). Activated PERK acts to limit mRNA translation, enable proper protein folding, and restore the homeostasis in the endoplasmic reticulum. Given that Myc activation contributes to many types of lymphoid and myeloid human leukemias, we used a mouse model to examine the importance of PERK in development and progression of Mycinduced leukemias. We found that genetic ablation of Perk does not suppress the generation of the leukemic cells in the bone marrow. However, the cell-autonomous Perk deficiency restricts the dissemination of leukemic cells into peripheral blood, lymph nodes, and vital peripheral organs. Whereas the loss of the IFNAR1 chain of type I IFN receptor stimulated leukemia, Perk ablation did not stabilize IFNAR1, suggesting that PERK stimulates the leukemic cells' dissemination in an IFNAR1-independent manner. We discuss the rationale for using PERK inhibitors against Myc-driven leukemias.
机译:多动致癌Myc刺激诱导展开蛋白质反应的蛋白质合成,这需要真核翻译引发因子2-α激酶3的功能,也称为蛋白激酶R(PKR) - 样内质网激酶(PERK)。激活的PERK用于限制mRNA翻译,使能适当的蛋白质折叠,并在内质网中恢复稳态。鉴于Myc活化有助于许多类型的淋巴和骨髓性白血病,我们使用小鼠模型来研究损害症症在菌诱导的白血病发展中的重要性。我们发现Perk的遗传消融不会抑制骨髓中白血病细胞的产生。然而,细胞 - 自主的Perk缺乏将白血病细胞的传播限制为外周血,淋巴结和重要外周脏器官。然而,IFNAR1的IFN受体刺激白血病的IFNAR1链的丧失,但PERK消融未稳定IFNAR1,表明PERK以IFNAR1-IFNAR1-IFNAR1-IFNAR1-的方式刺激白血病细胞的传播。我们讨论使用PERK抑制剂对MYC驱动的白血病的理由。

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