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JmjC 结构域蛋白 NO66/RIOX-1 影响急性髓系白血病中增殖与成熟的平衡。

The JmjC-domain protein NO66/RIOX-1 affects the balance between proliferation and maturation in acute myeloid leukemia.

机构信息

Clinical Cooperation Unit Molecular Hematology/Oncology, German Cancer Research Center (DKFZ) and Department of Internal Medicine V, University of Heidelberg, Germany.

Department of Internal Medicine V, University of Heidelberg, Germany.

出版信息

Exp Cell Res. 2021 May 1;402(1):112566. doi: 10.1016/j.yexcr.2021.112566. Epub 2021 Mar 18.

Abstract

As epigenetic regulators are frequently dysregulated in acute myeloid leukemia (AML) we determined expression levels of the JmjC-protein NO66 in AML cell lines and sub fractions of healthy human hematopoietic cells. NO66 is absent in the AML cell lines KG1/KG1a which consist of cells with the immature CD34/CD38 phenotype and is regarded as a "stem cell-like" model system. Similarly, NO66 is not detectable in CD34/CD38 cells purified from healthy donors but is clearly expressed in the more committed CD34/CD38 cell population. Loss of NO66 expression in KG1/KG1a cells is due to hyper-methylation of its promoter and is released by DNA-methyltransferase inhibitors. In KG1a cells stably expressing exogenous wild type (KG1a66wt) or enzymatically inactive mutant (KG1a66mut) NO66, respectively, the wild type protein inhibited proliferation and rDNA transcription. Gene expression profiling revealed that the expression of NO66 induces a transcriptional program enriched for genes with roles in proliferation and maturation (e.g.EPDR1, FCER1A, CD247, MYCN, SNORD13). Genes important for the maintenance of stem cell properties are downregulated (e.g. SIRPA, Lin28B, JAML). Our results indicate that NO66 induces lineage commitment towards myeloid progenitor cell fate and suggest that NO66 contributes to loss of stem cell properties.

摘要

由于表观遗传调节剂在急性髓细胞白血病 (AML) 中经常失调,我们测定了 JmjC 蛋白 NO66 在 AML 细胞系和健康人类造血细胞亚群中的表达水平。NO66 在由具有不成熟 CD34/CD38 表型的细胞组成的 AML 细胞系 KG1/KG1a 中不存在,并且被认为是一种“干细胞样”模型系统。同样,NO66 在从健康供体中纯化的 CD34/CD38 细胞中不可检测到,但在更成熟的 CD34/CD38 细胞群中明显表达。KG1/KG1a 细胞中 NO66 表达的缺失是由于其启动子的超甲基化,并且可以通过 DNA 甲基转移酶抑制剂释放。在分别稳定表达外源性野生型 (KG1a66wt) 或酶失活突变体 (KG1a66mut) NO66 的 KG1a 细胞中,野生型蛋白抑制增殖和 rDNA 转录。基因表达谱分析表明,NO66 的表达诱导了一个富含增殖和成熟相关基因的转录程序(例如 EPDR1、FCER1A、CD247、MYCN、SNORD13)。对维持干细胞特性重要的基因下调(例如 SIRPA、Lin28B、JAML)。我们的结果表明,NO66 诱导向髓系祖细胞命运的谱系承诺,并表明 NO66 有助于丧失干细胞特性。

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