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在KMT2A-PTD阳性白血病细胞的急性髓系白血病发病机制中,DNMT3A突变体通过增强自我更新活性提供增殖优势。

DNMT3A mutants provide proliferating advantage with augmentation of self-renewal activity in the pathogenesis of AML in KMT2A-PTD-positive leukemic cells.

作者信息

Bera Rabindranath, Chiu Ming-Chun, Huang Ying-Jung, Huang Gang, Lee Yun-Shien, Shih Lee-Yung

机构信息

Division of Hematology-Oncology, Chang Gung Memorial Hospital at Linkou, Taoyuan, Taiwan.

Divisions of Pathology and Experimental Hematology and Cancer Biology, Cincinnati Children's Hospital Medical Center, 3333 Burnet Avenue, Cincinnati, OH, 45229, USA.

出版信息

Oncogenesis. 2020 Feb 3;9(2):7. doi: 10.1038/s41389-020-0191-6.

Abstract

Acute myeloid leukemia (AML) with partial tandem duplication of histone-lysine N-methyltransferase 2A (KMT2A-PTD) is a subtype of AML and is associated with adverse survival, yet the molecular pathogenesis of KMT2A-PTD is not fully understood. DNA methyltransferase 3A (DNMT3A) is mutated in various myeloid neoplasms including AML, especially at the Arg882. Recently, it has been found that DNMT3A mutations frequently coexisted with KMT2A-PTD and are associated with inferior outcomes. We aimed to understand the biological role of DNMT3A mutation in KMT2A-PTD-positive cells. Herein, we found that overexpression of DNMT3A mutants (MT) in KMT2A-PTD-positive EOL-1 cells augmented cell proliferation and clonogenicity. Serial colony replating assays indicated that DNMT3A-MT increased the self-renewal ability of Kmt2a-PTD-expressing mouse bone marrow cells with immature morphology. At 10 months post bone marrow transplantation, mice with the combined Kmt2a-PTD and DNMT3A-MT showed hepatosplenomegaly and leukocytosis with a shorter latency compared to control and DNMT3A-wild-type. Gene expression microarray analyses of bone marrow samples from human AML with KMT2A-PTD/DNMT3A-MT showed a stem cell signature and myeloid hematopoietic lineage with dysregulation of HOXB gene expression. In addition, human bone marrow AML cells carrying KMT2A-PTD/DNMT3A-MT showed abnormal growth and augmented self-renewal activity in primary cell culture. The present study provides information underlying the pathogenic role of DNMT3A-MT with KMT2A-PTD in proliferating advantage with augmentation of self-renewal activity in human leukemia, which may help to better understand the disease and to design better therapy for AML patients with these mutations.

摘要

伴有组蛋白赖氨酸N -甲基转移酶2A部分串联重复(KMT2A - PTD)的急性髓系白血病(AML)是AML的一种亚型,与不良生存相关,但KMT2A - PTD的分子发病机制尚未完全阐明。DNA甲基转移酶3A(DNMT3A)在包括AML在内的多种髓系肿瘤中发生突变,尤其是在精氨酸882位点。最近发现,DNMT3A突变常与KMT2A - PTD共存,并与较差的预后相关。我们旨在了解DNMT3A突变在KMT2A - PTD阳性细胞中的生物学作用。在此,我们发现KMT2A - PTD阳性的EOL - 1细胞中DNMT3A突变体(MT)的过表达增强了细胞增殖和克隆形成能力。连续集落再接种试验表明,DNMT3A - MT增加了形态不成熟的表达Kmt2a - PTD的小鼠骨髓细胞的自我更新能力。骨髓移植后10个月,与对照组和DNMT3A野生型相比,同时具有Kmt2a - PTD和DNMT3A - MT的小鼠出现肝脾肿大和白细胞增多,潜伏期更短。对伴有KMT2A - PTD/DNMT3A - MT的人类AML骨髓样本进行基因表达微阵列分析,显示出干细胞特征和髓系造血谱系,同时HOXB基因表达失调。此外,携带KMT2A - PTD/DNMT3A - MT的人类骨髓AML细胞在原代细胞培养中表现出异常生长和增强的自我更新活性。本研究提供了关于DNMT3A - MT与KMT2A - PTD在人类白血病中通过增强自我更新活性而具有增殖优势的致病作用的信息,这可能有助于更好地理解该疾病,并为具有这些突变的AML患者设计更好的治疗方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1229/6997180/0f675c647cc2/41389_2020_191_Fig1_HTML.jpg

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