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FLI-1介导的成红细胞转化取决于其特定的DNA结合和转录激活特性。

Erythroblast transformation by FLI-1 depends upon its specific DNA binding and transcriptional activation properties.

作者信息

Ano Sabine, Pereira Rui, Pironin Martine, Lesault Isabelle, Milley Caroline, Lebigot Ingrid, Quang Christine Tran, Ghysdael Jacques

机构信息

CNRS UMR 146, Institut Curie, Centre Universitaire, Bâatiment 110, 91405 Orsay, France.

出版信息

J Biol Chem. 2004 Jan 23;279(4):2993-3002. doi: 10.1074/jbc.M303816200. Epub 2003 Oct 21.

Abstract

FLI-1 is a transcriptional regulator of the ETS family of proteins. Insertional activation at the FLI-1 locus is an early event in F-murine leukemia virus-induced erythroleukemia. Consistent with its essential role in erythroid transformation, enforced expression of FLI-1 in primary erythroblasts strongly impairs the response of these cells to erythropoietin (Epo), a cytokine essential to erythropoiesis. We show here that point mutations in the ETS domain that abolished FLI-1 binding to specific DNA elements (ETS-binding sites) suppressed the ability of FLI-1 to transform erythroblasts. The exchange of the entire ETS domain (DNA binding domain) of FLI-1 for that of PU.1 changed the DNA binding specificity of FLI-1 for that of PU.1 and impaired FLI-1 transforming properties. In contrast, ETS domain swapping mutants that maintained the DNA binding specificity of FLI-1 did not affect the ability of FLI-1 to transform erythroblasts. Deletion and swapping mutants that failed to inhibit the DNA binding activity of FLI-1 but impaired its transcriptional activation properties were also transformation-defective. Taken together, these results show that both the ability of FLI-1 to inhibit Epo-induced differentiation of erythroblasts and to confer enhanced cell survival in the absence of Epo critically depend upon FLI-1 ETS-binding site-dependent transcriptional activation properties.

摘要

FLI-1是ETS家族蛋白的转录调节因子。在FLI-1基因座的插入激活是F-鼠白血病病毒诱导的红白血病中的早期事件。与其在红系转化中的关键作用一致,在原代成红细胞中强制表达FLI-1会强烈损害这些细胞对促红细胞生成素(Epo)的反应,Epo是红细胞生成所必需的一种细胞因子。我们在此表明,ETS结构域中的点突变消除了FLI-1与特定DNA元件(ETS结合位点)的结合,抑制了FLI-1转化成红细胞的能力。将FLI-1的整个ETS结构域(DNA结合结构域)替换为PU.1的结构域,使FLI-1的DNA结合特异性变为PU.1的特异性,并损害了FLI-1的转化特性。相反,保持FLI-1 DNA结合特异性的ETS结构域交换突变体不影响FLI-1转化成红细胞的能力。未能抑制FLI-1的DNA结合活性但损害其转录激活特性的缺失和交换突变体也存在转化缺陷。综上所述,这些结果表明,FLI-1抑制Epo诱导的成红细胞分化以及在没有Epo的情况下赋予增强的细胞存活能力,这两者都严重依赖于FLI-1 ETS结合位点依赖性转录激活特性。

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