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DNMT3A 突变通过 NAM-NAD 代谢重编程促进白血病发生。

DNMT3A mutation promotes leukemia development through NAM-NAD metabolic reprogramming.

机构信息

Shanghai Institute of Hematology, State Key Laboratory of Medical Genomics, National Research Center for Translational Medicine at Shanghai, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, 200025, China.

Department of Neurosurgery, Renmin Hospital of Wuhan University, Wuhan, 430000, Hubei, China.

出版信息

J Transl Med. 2023 Jul 18;21(1):481. doi: 10.1186/s12967-023-04323-z.

Abstract

BACKGROUND

DNA methyltransferase 3A (DNMT3A) is frequently mutated in acute myeloid leukemia (AML) with Arg882His (R882H) as the hotspot mutation. It has been reported that DNMT3A mutation plays a key role in leukemogenesis through hypomethylation of some target genes associated with cell growth and differentiation. In this study, we investigated the function of DNMT3A R882H in the malignant progression of AML by regulating metabolic reprogramming.

METHODS

Ultra-High Performance Liquid Chromatography-High Resolution Tandem Mass Spectrometry (UHPLC-HRMS/MS) was used to detect metabolites in the serum of mice harboring Dnmt3a R878H mutation and the wild-type Dnmt3a. Methylated DNA Immunoprecipitation Sequencing (MeDIP-seq) and RNA sequencing (RNA-seq) were used to analyze the levels of DNA methylation and mRNA expression of genes in mouse Gr1 bone marrow cells respectively. The TCGA and GO databases were used to analyze the differential genes between human samples carrying the DNMT3A R882 mutation and the wild-type DNMT3A. Co-immunoprecipitation and immunoblotting were used to illustrate the binding levels of Cyclins-CDKs and CDK inhibitors including CDKN1A and CDKN1B. Flow cytometry was used to analyze the cell differentiation, division, apoptosis and cell cycle. The effect of NAMPT inhibition on leukemia was evaluated by using in vivo fluorescence imaging in NOG mouse model bearing OCI-AML3 cells.

RESULTS

DNMT3A mutation caused high expression of nicotinamide phosphoribosyltransferase (NAMPT), a key enzyme in the nicotinamide adenine dinucleotide (NAD) salvage synthetic pathway, through DNA hypomethylation, and finally led to abnormal nicotinamide (NAM) metabolism and NAD synthesis. The NAM-NAD metabolic abnormalities caused accelerated cell cycle progression. Inhibition of NAMPT can reduce the binding degree between Cyclins-CDKs, and increase the binding interaction of the CDK inhibitors with Cyclins-CDKs complexes. Moreover, cells with high expression of NAMPT were more sensitive to the NAMPT inhibitor FK866 with a lower IC50. The inhibition of NAMPT can remarkably extend the survival time of tumor-bearing mice and reduce the infiltration of tumor cells.

CONCLUSIONS

Taken together, our data showed that DNMT3A mutation caused NAMPT overexpression to induce the reprogramming of NAM-NAD metabolism and contribute to abnormal proliferation, which provided a potential direction for targeted therapy at the metabolic level in AML with DNMT3A mutation.

摘要

背景

DNA 甲基转移酶 3A(DNMT3A)在急性髓系白血病(AML)中经常发生突变,Arg882His(R882H)是热点突变。据报道,DNMT3A 突变通过使一些与细胞生长和分化相关的靶基因去甲基化,在白血病发生中发挥关键作用。在这项研究中,我们通过调节代谢重编程来研究 DNMT3A R882H 突变在 AML 恶性进展中的作用。

方法

超高效液相色谱-高分辨串联质谱(UHPLC-HRMS/MS)用于检测携带 Dnmt3a R878H 突变和野生型 Dnmt3a 的小鼠血清中的代谢物。甲基化 DNA 免疫沉淀测序(MeDIP-seq)和 RNA 测序(RNA-seq)分别用于分析小鼠 Gr1 骨髓细胞中 DNA 甲基化和基因 mRNA 表达水平。TCGA 和 GO 数据库用于分析携带 DNMT3A R882 突变和野生型 DNMT3A 的人类样本之间的差异基因。免疫共沉淀和免疫印迹用于说明细胞周期蛋白-CDKs 和 CDK 抑制剂(包括 CDKN1A 和 CDKN1B)的结合水平。流式细胞术用于分析细胞分化、分裂、凋亡和细胞周期。通过在携带 OCI-AML3 细胞的 NOG 小鼠模型中进行体内荧光成像来评估 NAMPT 抑制对白血病的影响。

结果

DNMT3A 突变通过 DNA 低甲基化导致烟酰胺磷酸核糖基转移酶(NAMPT)的高表达,NAMPT 是烟酰胺腺嘌呤二核苷酸(NAD)补救合成途径中的关键酶,最终导致异常的烟酰胺(NAM)代谢和 NAD 合成。NAM-NAD 代谢异常导致细胞周期进程加速。抑制 NAMPT 可降低细胞周期蛋白-CDKs 的结合程度,并增加 CDK 抑制剂与细胞周期蛋白-CDKs 复合物的结合相互作用。此外,高表达 NAMPT 的细胞对 NAMPT 抑制剂 FK866 的敏感性更高,IC50 更低。抑制 NAMPT 可显著延长荷瘤小鼠的生存时间并减少肿瘤细胞的浸润。

结论

总之,我们的数据表明,DNMT3A 突变导致 NAMPT 过表达,从而诱导 NAM-NAD 代谢重编程,并导致异常增殖,这为 DNMT3A 突变的 AML 提供了一个在代谢水平上进行靶向治疗的潜在方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53ef/10355022/9bf7aa6eba51/12967_2023_4323_Fig1_HTML.jpg

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