Tu Po-Shu, Lin Eric Chang-Yi, Chen Hsiao-Wen, Chen Shuoh-Wen, Lin Ting-An, Gau Jyh-Pyng, Chang Yuan-I
Department and Institute of Physiology, National Yang-Ming University Taipei 11221, Taiwan.
Division of Hematology and Oncology, Department of Medicine, Taipei Veterans General Hospital Taipei 11217, Taiwan.
Am J Transl Res. 2020 Mar 15;12(3):1016-1030. eCollection 2020.
DNA methylation, catalyzed by DNA methyltransferases (DNMTs), is a heritable epigenetic mark, participating in numerous physiological processes. DNMT3A is of particular relevance to hematopoietic differentiation, because mutations are strongly related to hematopoietic malignancies. Additionally, DNMT3A deficiency has been reported to increase the hematopoietic stem cell pool by limiting their differentiation. Our previous study demonstrated that complete loss of resulted in anemia, while haploinsufficiency caused an elevated population of erythrocytes in the content of oncogenic . Since erythropoiesis is tightly regulated via the erythropoietin (EPO)-mediated RAS-RAF-MEK-ERK1/2 pathway, the question arises whether DNMT3A cooperates with RAS signaling to modulate erythropoiesis. Human leukemia cell lines were used, with differentiation capabilities towards megakaryocyte and erythroid lineages. Overexpression of DNMT3A was found to enhance erythrocytic differentiation of K562 cells, while DNMT3A knockdown suppressed differentiation. Furthermore, higher DNMT3A expression was detected in late-stage mouse erythroblasts along with the DNMT3A translocation to the nucleus. Further studies demonstrated that both ERK1/2-DNMT3A interaction and serine-255 phosphorylation in DNMT3A led to DNMT3A translocation into the nucleus, and modulated erythrocytic differentiation. Our results not only explore the critical role of DNMT3A in erythropoiesis, but also provide a new insight into ERK1/2-DNMT3A interaction in the hematopoietic system.
由DNA甲基转移酶(DNMTs)催化的DNA甲基化是一种可遗传的表观遗传标记,参与众多生理过程。DNMT3A与造血分化特别相关,因为其突变与造血系统恶性肿瘤密切相关。此外,据报道DNMT3A缺陷通过限制造血干细胞分化来增加造血干细胞池。我们之前的研究表明,DNMT3A完全缺失会导致贫血,而DNMT3A单倍体不足会导致致癌基因含量中红细胞数量增加。由于红细胞生成是通过促红细胞生成素(EPO)介导的RAS-RAF-MEK-ERK1/2途径严格调控的,因此问题在于DNMT3A是否与RAS信号协同调节红细胞生成。使用了具有向巨核细胞和红系谱系分化能力的人白血病细胞系。发现DNMT3A过表达可增强K562细胞的红细胞分化,而DNMT3A敲低则抑制分化。此外,在晚期小鼠成红细胞中检测到较高的DNMT3A表达以及DNMT3A向细胞核的转位。进一步研究表明,ERK1/2-DNMT3A相互作用和DNMT3A中的丝氨酸-255磷酸化均导致DNMT3A转位到细胞核中,并调节红细胞分化。我们的结果不仅探讨了DNMT3A在红细胞生成中的关键作用,还为造血系统中ERK1/2-DNMT3A相互作用提供了新的见解。