The histone methyltransferase inhibitor A-366 enhances hemoglobin expression in erythroleukemia cells upon co-exposure with chemical inducers in culture.

IF 1.9 3区 生物学 Q2 BIOLOGY
Christos I Papagiannopoulos, Nikoleta F Theodoroula, Konstantinos A Kyritsis, Melpomeni G Akrivou, Maria Kosmidou, Konstantina Tsouderou, Nikolaos Grigoriadis, Ioannis S Vizirianakis
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引用次数: 3

Abstract

Background: Erythroleukemia is caused by the uncontrolled multiplication of immature erythroid progenitor cells which fail to differentiate into erythrocytes. By directly targeting this class of malignant cells, the induction of terminal erythroid differentiation represents a vital therapeutic strategy for this disease. Erythroid differentiation involves the execution of a well-orchestrated gene expression program in which epigenetic enzymes play critical roles. In order to identify novel epigenetic mediators of differentiation, this study explores the effects of multiple, highly specific, epigenetic enzyme inhibitors, in murine and human erythroleukemia cell lines.

Results: We used a group of compounds designed to uniquely target the following epigenetic enzymes: G9a/GLP, EZH1/2, SMYD2, PRMT3, WDR5, SETD7, SUV420H1 and DOT1L. The majority of the probes had a negative impact on both cell proliferation and differentiation. On the contrary, one of the compounds, A-366, demonstrated the opposite effect by promoting erythroid differentiation of both cell models. A-366 is a selective inhibitor of the G9a methyltransferase and the chromatin reader Spindlin1. Investigation of the molecular mechanism of action revealed that A-366 forced cells to exit from the cell cycle, a fact that favored erythroid differentiation. Further analysis led to the identification of a group of genes that mediate the A-366 effects and include CDK2, CDK4 and CDK6.

Conclusions: A-366, a selective inhibitor of G9a and Spindlin1, demonstrates a compelling role in the erythroid maturation process by promoting differentiation, a fact that is highly beneficial for patients suffering from erythroleukemia. In conclusion, this data calls for further investigation towards the delivery of epigenetic drugs and especially A-366 in hematopoietic disorders.

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组蛋白甲基转移酶抑制剂A-366与化学诱导剂共同暴露在培养中的红白血病细胞中增强血红蛋白表达。
背景:红细胞白血病是由未成熟的红细胞祖细胞增殖失控而不能分化为红细胞引起的。通过直接靶向这类恶性细胞,诱导终末红细胞分化是治疗这种疾病的重要策略。红系分化涉及一个精心安排的基因表达程序的执行,其中表观遗传酶起关键作用。为了鉴定新的表观遗传分化介质,本研究探索了多种高度特异性的表观遗传酶抑制剂在小鼠和人红细胞白血病细胞系中的作用。结果:我们使用了一组专门针对以下表观遗传酶的化合物:G9a/GLP, EZH1/2, SMYD2, PRMT3, WDR5, SETD7, SUV420H1和DOT1L。大多数探针对细胞增殖和分化都有负面影响。相反,其中一种化合物A-366则表现出相反的作用,它能促进两种细胞模型的红系分化。a -366是G9a甲基转移酶和染色质解读器Spindlin1的选择性抑制剂。分子机制的研究表明,a -366迫使细胞退出细胞周期,这一事实有利于红细胞分化。进一步的分析鉴定出一组介导a -366效应的基因,包括CDK2、CDK4和CDK6。结论:a -366是G9a和Spindlin1的选择性抑制剂,通过促进红细胞分化在红细胞成熟过程中发挥了重要作用,这一事实对红细胞白血病患者非常有益。总之,这些数据需要进一步研究表观遗传药物,特别是A-366在造血疾病中的应用。
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来源期刊
CiteScore
5.20
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: Journal of Biological Research-Thessaloniki is a peer-reviewed, open access, international journal that publishes articles providing novel insights into the major fields of biology. Topics covered in Journal of Biological Research-Thessaloniki include, but are not limited to: molecular biology, cytology, genetics, evolutionary biology, morphology, development and differentiation, taxonomy, bioinformatics, physiology, marine biology, behaviour, ecology and conservation.
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