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Ets家族转录因子PU.1过表达诱导小鼠红白血病细胞的谱系转换。

Lineage switch induced by overexpression of Ets family transcription factor PU.1 in murine erythroleukemia cells.

作者信息

Yamada T, Abe M, Higashi T, Yamamoto H, Kihara-Negishi F, Sakurai T, Shirai T, Oikawa T

机构信息

Department of Cell Genetics, Sasaki Institute, and the Department of Pathology, Juntendo University School of Medicine, Tokyo, Japan.

出版信息

Blood. 2001 Apr 15;97(8):2300-7. doi: 10.1182/blood.v97.8.2300.

Abstract

PU.1 is an Ets family transcription factor essential for myelomonocyte and B-cell development. We previously showed that overexpression of PU.1 in murine erythroleukemia (MEL) cells inhibits growth and erythroid differentiation and induces apoptosis of the cells. In an effort to identify target genes of PU.1 concerning these phenomena by using a messenger RNA differential display strategy, we found that some myeloid-specific and lymphoid-specific genes, such as the osteopontin gene, are transcriptionally up-regulated in MEL cells after overexpression of PU.1. We then found that expression of several myelomonocyte-specific genes, including the CAAT-enhancer-binding protein-alpha and granulocyte-macrophage colony-stimulating factor receptor genes, was induced in MEL cells after overexpression of PU.1. B-cell-specific genes were also examined, and expression of the CD19 gene was found to be induced. Expression of the myelomonocyte-specific proteins CD11b and F4/80 antigen but not the B-cell-specific proteins B220 and CD19 was also induced. After overexpression of PU.1, MEL cells became adherent and phagocytic and showed enhanced nitroblue tetrazolium reduction activity. Expression of myelomonocyte-specific and B-cell-specific genes was not induced when a mutant PU.1 with part of the activation domain deleted (a change found to inhibit erythroid differentiation of MEL cells) was expressed. These results indicate that PU.1 induces a lineage switch in MEL cells toward myelomonocytic cells and that its activation domain is essential for this effect. The results also suggest that the pathway of the lineage switch is distinct from that of inhibition of erythroid differentiation in MEL cells.

摘要

PU.1是一种Ets家族转录因子,对骨髓单核细胞和B细胞的发育至关重要。我们先前发现,在鼠红细胞白血病(MEL)细胞中过表达PU.1会抑制细胞生长和红系分化,并诱导细胞凋亡。为了通过信使核糖核酸差异显示策略确定与这些现象相关的PU.1靶基因,我们发现,在MEL细胞中过表达PU.1后,一些髓系特异性和淋巴系特异性基因,如骨桥蛋白基因,在转录水平上被上调。然后我们发现,在MEL细胞中过表达PU.1后,包括CCAAT增强子结合蛋白α和粒细胞-巨噬细胞集落刺激因子受体基因在内的几种骨髓单核细胞特异性基因的表达被诱导。我们还检测了B细胞特异性基因,发现CD19基因的表达被诱导。骨髓单核细胞特异性蛋白CD11b和F4/80抗原的表达也被诱导,而B细胞特异性蛋白B220和CD19的表达未被诱导。过表达PU.1后,MEL细胞变得贴壁且具有吞噬作用,并表现出增强的硝基蓝四氮唑还原活性。当表达缺失部分激活域的突变型PU.1(这种变化被发现可抑制MEL细胞的红系分化)时,骨髓单核细胞特异性和B细胞特异性基因的表达未被诱导。这些结果表明,PU.1诱导MEL细胞向骨髓单核细胞系转变,并且其激活域对这种效应至关重要。结果还表明,细胞系转变的途径与MEL细胞红系分化抑制的途径不同。

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