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NRF2-driven miR-125B1 and miR-29B1 transcriptional regulation controls a novel anti-apoptotic miRNA regulatory network for AML survival

机译:NRF2驱动的miR-125B1和miR-29B1转录调控可控制AML生存的新型抗凋亡miRNA调控网络

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摘要

Transcription factor NRF2 is an important regulator of oxidative stress. It is involved in cancer progression, and has abnormal constitutive expression in acute myeloid leukaemia (AML). Posttranscriptional regulation by microRNAs (miRNAs) can affect the malignant phenotype of AML cells. In this study, we identified and characterised NRF2-regulated miRNAs in AML. An miRNA array identified miRNA expression level changes in response to NRF2 knockdown in AML cells. Further analysis of miRNAs concomitantly regulated by knockdown of the NRF2 inhibitor KEAP1 revealed the major candidate NRF2-mediated miRNAs in AML. We identified miR-125B to be upregulated and miR-29B to be downregulated by NRF2 in AML. Subsequent bioinformatic analysis identified putative NRF2 binding sites upstream of the miR-125B1 coding region and downstream of the mir-29B1 coding region. Chromatin immunoprecipitation analyses showed that NRF2 binds to these antioxidant response elements (AREs) located in the 5' untranslated regions of miR-125B and miR-29B. Finally, primary AML samples transfected with anti-miR-125B antagomiR or miR-29B mimic showed increased cell death responsiveness either alone or co-treated with standard AML chemotherapy. In summary, we find that NRF2 regulation of miR-125B and miR-29B acts to promote leukaemic cell survival, and their manipulation enhances AML responsiveness towards cytotoxic chemotherapeutics.
机译:转录因子NRF2是氧化应激的重要调节剂。它参与癌症发展,并在急性髓细胞性白血病(AML)中具有异常的组成型表达。 microRNA(miRNA)的转录后调控可影响AML细胞的恶性表型。在这项研究中,我们在AML中鉴定并鉴定了NRF2调控的miRNA。一个miRNA阵列确定了响应AML细胞中NRF2敲低的miRNA表达水平的变化。通过敲除NRF2抑制剂KEAP1来同时调控的miRNA的进一步分析揭示了AML中主要的候选NRF2介导的miRNA。我们在AML中发现NRF2上调了miR-125B,而下调了miR-29B。随后的生物信息学分析确定了miR-125B1编码区上游和mir-29B1编码区下游的假定NRF2结合位点。染色质免疫沉淀分析表明,NRF2与位于miR-125B和miR-29B 5'非翻译区的这些抗氧化剂反应元件(ARE)结合。最后,用抗miR-125B antagomiR或miR-29B模拟物转染的原发性AML样品单独或与标准AML化疗联合治疗均显示细胞死亡反应性增强。总之,我们发现NRF2对miR-125B和miR-29B的调节可促进白血病细胞的存活,并且它们的操作增强了AML对细胞毒性化疗的反应性。

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