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微小RNA-181a介导的AC9蛋白下调降低细胞内cAMP水平并抑制全反式维甲酸诱导的急性早幼粒细胞白血病细胞分化。

MicroRNA-181a-mediated downregulation of AC9 protein decreases intracellular cAMP level and inhibits ATRA-induced APL cell differentiation.

作者信息

Zhuang L K, Xu G P, Pan X R, Lou Y J, Zou Q P, Xia D, Yan W W, Zhang Y T, Jia P M, Tong J H

机构信息

State Key Laboratory of Medical Genomics, Faculty of Medical Laboratory Science and Shanghai Institute of Hematology, Rui-jin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.

出版信息

Cell Death Dis. 2014 Apr 10;5(4):e1161. doi: 10.1038/cddis.2014.130.

Abstract

AC9 is one of the adenylate cyclase (AC) isoforms, which catalyze the conversion of ATP to cAMP, an important second messenger. We previously found that the integration of cAMP/PKA pathway with nuclear receptor-mediated signaling was required during all-trans retinoic acid (ATRA)-induced maturation of acute promyelocytic leukemia (APL) cells. Here we showed that AC9 could affect intracellular cAMP level and enhance the trans-activity of retinoic acid receptor. Knockdown of AC9 in APL cell line NB4 could obviously inhibit ATRA-induced differentiation. We also demonstrated that miR-181a could decrease AC9 expression by targeting 3'UTR of AC9 mRNA, finally controlling the production of intracellular cAMP. The expression of miR-181a itself could be inhibited by CEBPα, probably accounting for the differential expression of miR-181a in NB4 and ATRA-resistant NB4-R1 cells. Moreover, we found that AC9 expression was relatively lower in newly diagnosed or relapsed APL patients than in both complete remission and non-leukemia cases, closely correlating with the leukemogenesis of APL. Taken together, our studies revealed for the first time the importance of miR-181a-mediated AC9 downregulation in APL. We also suggested the potential value of AC9 as a biomarker in the clinical diagnosis and treatment of leukemia.

摘要

AC9是腺苷酸环化酶(AC)同工型之一,它催化ATP转化为cAMP,cAMP是一种重要的第二信使。我们之前发现,在全反式维甲酸(ATRA)诱导急性早幼粒细胞白血病(APL)细胞成熟过程中,需要cAMP/PKA信号通路与核受体介导的信号传导整合。在此我们表明,AC9可影响细胞内cAMP水平并增强维甲酸受体的反式活性。在APL细胞系NB4中敲低AC9可明显抑制ATRA诱导的分化。我们还证明,miR-181a可通过靶向AC9 mRNA的3'UTR降低AC9表达,最终控制细胞内cAMP的产生。miR-181a自身的表达可被CEBPα抑制,这可能是NB4和ATRA耐药的NB4-R1细胞中miR-181a表达差异的原因。此外,我们发现新诊断或复发的APL患者中AC9表达相对低于完全缓解和非白血病病例,这与APL的白血病发生密切相关。综上所述,我们的研究首次揭示了miR-181a介导的AC9下调在APL中的重要性。我们还提出AC9作为白血病临床诊断和治疗生物标志物的潜在价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c636/5424108/c1a2fdbfdbad/cddis2014130f1.jpg

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