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miR-34b targets cyclic AMP-responsive element binding protein in acute myeloid leukemia.

机译:miR-34b靶向急性髓细胞性白血病中的环状AMP响应元件结合蛋白。

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The cyclic AMP-responsive element binding protein (CREB) is documented to be overexpressed in leukemia, but the underlying mechanism remains unknown. Here, microRNAs (miRNA), which act as negative regulators of gene expression principally through translational repression, are investigated for the mediation of high CREB protein levels. A series of miRNAs that target CREB were identified. Real-time quantitative PCR revealed that miR-34b was expressed significantly less in myeloid cell lines, previously known for high CREB protein levels. Exogenous miR-34b expression was induced, and results revealed a direct interaction with the CREB 3'-untranslated region, with the consequent reduction of the CREB protein levels in vitro. miR-34b restored expression caused cell cycle abnormalities, reduced anchorage-independent growth, and altered CREB target gene expression, suggesting its suppressor potential. Using reverse-phase protein array, CREB target proteins (BCL-2, cyclin A1, cyclin B1, cyclin D, nuclear factor-kappaB, Janus-activated kinase 1, and signal transducer and activator of transcription 3), as well as many downstream protein kinases and cell survival signaling pathways (AKT/mammalian target of rapamycin and extracellular signal-regulated kinase) usually elicited by CREB, were observed to have decreased. The miR-34b/miR-34c promoter was shown to be methylated in the leukemia cell lines used. This epigenetic regulation should control the observed miR-34b expression levels to maintain the CREB protein overexpressed. In addition, the inverse correlation between miR-34b and CREB expression was found in a cohort of 78 pediatric patients at diagnosis of acute myeloid leukemia, supporting this relationship in vivo. Our results identify a direct miR-34b target gene, provide a possible mechanism for CREB overexpression, and provide new information about myeloid transformation and therapeutic strategies.
机译:环状AMP反应元件结合蛋白(CREB)被证明在白血病中过表达,但是其潜在机制仍然未知。在这里,主要通过翻译抑制作用作为基因表达的负调控子的microRNA(miRNA)被研究用于高CREB蛋白水平的介导。确定了一系列靶向CREB的miRNA。实时定量PCR显示,miR-34b在以前以高CREB蛋白水平而闻名的骨髓细胞系中的表达明显减少。诱导了外源性miR-34b表达,结果显示与CREB ​​3'-非翻译区直接相互作用,因此体外CREB蛋白水平降低。 miR-34b恢复的表达引起细胞周期异常,减少锚定非依赖性生长,并改变CREB靶基因的表达,表明其抑制潜力。使用反相蛋白阵列,CREB靶蛋白(BCL-2,细胞周期蛋白A1,细胞周期蛋白B1,细胞周期蛋白D,核因子-κB,Janus激活的激酶1,信号转导和转录激活子3)以及许多下游观察到通常由CREB引起的蛋白激酶和细胞存活信号通路(AKT /雷帕霉素的哺乳动物靶标和细胞外信号调节激酶)减少。显示miR-34b / miR-34c启动子在所用的白血病细胞系中被甲基化。这种表观遗传调控应控制观察到的miR-34b表达水平,以维持CREB蛋白过表达。此外,在确诊急性髓性白血病的78名儿科患者队列中,发现了miR-34b与CREB表达之间的负相关关系,从而支持了体内这种关系。我们的结果确定了一个直接的miR-34b靶基因,为CREB过表达提供了可能的机制,并提供了有关髓样转化和治疗策略的新信息。

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