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长链非编码RNA MAGI2-AS3通过促进急性髓系白血病中LRIG1启动子的TET2依赖性DNA去甲基化来抑制白血病干细胞的自我更新。

LncRNA MAGI2-AS3 inhibits the self-renewal of leukaemic stem cells by promoting TET2-dependent DNA demethylation of the LRIG1 promoter in acute myeloid leukaemia.

作者信息

Chen Lijuan, Fan Xu, Zhu Jianhua, Chen Xuexin, Liu Yiling, Zhou Hao

机构信息

Department of Obstetrics and Gynecology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology , Wuhan, China.

Liver Research Center, Beijing Friendship Hospital, Capital Medical University , Beijing Key Laboratory of Translational Medicine in Liver Cirrhosis & National Clinical Research Center for Digestive Diseases, Beijing, China.

出版信息

RNA Biol. 2020 Jun;17(6):784-793. doi: 10.1080/15476286.2020.1726637. Epub 2020 Mar 15.

Abstract

The presence or absence of cytogenetic mutations is proposed to be responsible for the pathogenesis of acute myeloid leukaemia (AML). However, the current classification system is inadequate to elucidate the molecular heterogeneity of the disease, and therapy failures frequently occur. Leukaemia stem cells (LSCs) initiate and maintain the clonal hierarchy of AML and exhibit properties of self-renewal remaining recalcitrant to conventional chemotherapy. In this study, we identified a novel long non-coding RNA (lncRNA) MAGI2 antisense RNA 3 (MAGI2-AS3) in AML and investigated its functional role in regulating LSCs self-renewal. LSCs were identified by immunoprofiling of CD34 CD123 in AML patients' marrow. MAGI2-AS3 exhibited a poor expression level in LSCs than the normal human haematopoietic stem cells. Lentivirus-mediated upregulation of MAGI2-AS3 or leucine-rich repeats and Ig-like domains 1 (LRIG1) impaired LSCs self-renewal. MAGI2-AS3-overexpressed LSCs acquired the ability of self-renewal following lentivirus-mediated knockdown of LRIG1. Methylation-dependent inhibition of LRIG1 was evident in LSCs. MAGI2-AS3 was found to induce occupancy of TET2 at the LRIG1 promoter. Lentivirus-mediated downregulation of TET2 could impair MAGI2-AS3-mediated elevation of LRIG1 and neutralize the inhibitory effect of MAGI2-AS3 on LSCs self-renewal. analysis indicated an elevated overall survival of NOD/SCID mice injected with LSCs in the presence of MAGI2-AS3. Altogether, the key findings support the potential of lncRNA MAGI2-AS3 to serve as a novel candidate for the improvement of AML treatment.

摘要

细胞遗传学突变的存在与否被认为是急性髓系白血病(AML)发病机制的原因。然而,当前的分类系统不足以阐明该疾病的分子异质性,并且治疗失败经常发生。白血病干细胞(LSCs)启动并维持AML的克隆层次结构,并表现出自我更新特性,对传统化疗具有抗性。在本研究中,我们在AML中鉴定出一种新型长链非编码RNA(lncRNA)MAGI2反义RNA 3(MAGI2-AS3),并研究了其在调节LSCs自我更新中的功能作用。通过对AML患者骨髓中CD34 CD123进行免疫分析来鉴定LSCs。与正常人造血干细胞相比,MAGI2-AS3在LSCs中的表达水平较低。慢病毒介导的MAGI2-AS3或富含亮氨酸重复序列和免疫球蛋白样结构域1(LRIG1)的上调会损害LSCs的自我更新。慢病毒介导的LRIG1敲低后,过表达MAGI2-AS3 的LSCs获得了自我更新能力。在LSCs中,LRIG1存在明显的甲基化依赖性抑制。发现MAGI2-AS3可诱导TET2在LRIG1启动子处的占据。慢病毒介导的TET2下调会损害MAGI2-AS3介导的LRIG1升高,并抵消MAGI2-AS3对LSCs自我更新的抑制作用。分析表明,在存在MAGI2-AS3的情况下,注射LSCs的NOD/SCID小鼠的总生存期延长。总之,这些关键发现支持lncRNA MAGI2-AS-3作为改善AML治疗的新型候选物的潜力。

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