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ADAR1 promotes malignant progenitor reprogramming in chronic myeloid leukemia

机译:ADAR1促进慢性粒细胞白血病的恶性祖细胞重编程

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摘要

The molecular etiology of human progenitor reprogramming into self-renewing leukemia stem cells (LSC) has remained elusive. Although DNA sequencing has uncovered spliceosome gene mutations that promote alternative splicing and portend leukemic transformation, isoform diversity also may be generated by RNA editing mediated by adenosine deaminase acting on RNA (ADAR) enzymes that regulate stem cell maintenance. In this study, whole-transcriptome sequencing of normal, chronic phase, and serially transplantable blast crisis chronic myeloid leukemia (CML) progenitors revealed increased IFN-γ pathway gene expression in concert with BCR-ABL amplification, enhanced expression of the IFN-responsive ADAR1 p150 isoform, and a propensity for increased adenosine-to-inosine RNA editing during CML progression. Lentiviral overexpression experiments demonstrate that ADAR1 p150 promotes expression of the myeloid transcription factor PU.1 and induces malignant reprogramming of myeloid progenitors. Moreover, enforced ADAR1 p150 expression was associated with production of a misspliced form of GSK3β implicated in LSC self-renewal. Finally, functional serial transplantation and shRNA studies demonstrate that ADAR1 knockdown impaired in vivo self-renewal capacity of blast crisis CML progenitors. Together these data provide a compelling rationale for developing ADAR1-based LSC detection and eradication strategies.
机译:人类祖细胞重编程为自我更新的白血病干细胞(LSC)的分子病因仍然难以捉摸。尽管DNA测序发现了剪接体基因突变,这些基因突变促进了选择性剪接并预示着白血病的转化,但腺苷脱氨酶作用于调节干细胞维持的RNA(ADAR)酶介导的RNA编辑也可能产生同工型多样性。在这项研究中,正常,慢性期和连续可移植的胚芽危机慢性粒细胞白血病(CML)祖细胞的全转录组测序揭示了与BCR-ABL扩增协同增加的IFN-γ途径基因表达,增强了对IFN反应的ADAR1的表达。 p150亚型,在CML进展期间倾向于增加腺苷到肌苷RNA的编辑。慢病毒的过表达实验表明,ADAR1 p150促进了髓样转录因子PU.1的表达,并诱导了髓样祖细胞的恶性重编程。此外,强制执行的ADAR1 p150表达与LSK自我更新有关的GSK3β错配形式的产生有关。最后,功能性串行移植和shRNA研究表明,ADAR1敲低会损害高危CML祖细胞的体内自我更新能力。这些数据加在一起为开发基于ADAR1的LSC检测和根除策略提供了令人信服的理由。

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