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PU.1 促进与 E2F1 下调相关的小鼠髓系细胞周期退出。

PU.1 promotes cell cycle exit in the murine myeloid lineage associated with downregulation of E2F1.

机构信息

Department of Microbiology and Immunology and the Centre for Human Immunology, Schulich School of Medicine and Dentistry, Western University, London, Ontario, Canada.

Department of Research, Shriners Hospital for Children, Cincinnati, OH, USA.

出版信息

Exp Hematol. 2014 Mar;42(3):204-217.e1. doi: 10.1016/j.exphem.2013.11.011. Epub 2013 Dec 5.

Abstract

Acute myeloid leukemia (AML) is characterized by increased proliferation and reduced differentiation of myeloid lineage cells. AML is frequently associated with mutations or chromosomal rearrangements involving transcription factors. PU.1 (encoded by Sfpi1) is an E26 transformation-specific family transcription factor that is required for myeloid differentiation. Reduced PU.1 levels, caused by either mutation or repression, are associated with human AML and are sufficient to cause AML in mice. The objective of this study was to determine whether reduced PU.1 expression induces deregulation of the cell cycle in the myeloid lineage. Our results showed that immature myeloid cells expressing reduced PU.1 levels (Sfpi1(BN/BN) myeloid cells) proliferated indefinitely in cell culture and expanded in vivo. Transplantation of Sfpi1(BN/BN) cells induced AML in recipient mice. Cultured Sfpi1(BN/BN) cells expressed elevated messenger RNA transcript and protein levels of E2F1, an important regulator of cell cycle entry. Restoration of PU.1 expression in Sfpi1(BN/BN) myeloid cells blocked proliferation, induced differentiation, and reduced E2F1 expression. Taken together, these data show that PU.1 controls cell cycle exit in the myeloid lineage associated with downregulation of E2F1 expression.

摘要

急性髓系白血病(AML)的特征是髓系细胞增殖增加和分化减少。AML 常与涉及转录因子的突变或染色体重排有关。PU.1(由 Sfpi1 编码)是一种 E26 转化特异性家族转录因子,是髓系分化所必需的。由于突变或抑制导致的 PU.1 水平降低与人类 AML 相关,并足以在小鼠中引起 AML。本研究的目的是确定减少 PU.1 表达是否会导致髓系细胞周期失调。我们的结果表明,表达降低水平的不成熟髓样细胞(Sfpi1(BN/BN)髓样细胞)在细胞培养中无限增殖并在体内扩增。移植 Sfpi1(BN/BN)细胞可诱导受者小鼠发生 AML。培养的 Sfpi1(BN/BN)细胞表达升高的信使 RNA 转录本和细胞周期进入的重要调节因子 E2F1 的蛋白水平。在 Sfpi1(BN/BN)髓样细胞中恢复 PU.1 表达可阻断增殖、诱导分化并降低 E2F1 表达。总之,这些数据表明 PU.1 控制与 E2F1 表达下调相关的髓系细胞周期退出。

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