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ETO2在红细胞生成过程中协调细胞增殖和分化。

ETO2 coordinates cellular proliferation and differentiation during erythropoiesis.

作者信息

Goardon Nicolas, Lambert Julie A, Rodriguez Patrick, Nissaire Philippe, Herblot Sabine, Thibault Pierre, Dumenil Dominique, Strouboulis John, Romeo Paul-Henri, Hoang Trang

机构信息

Département d'Hématologie, Institut Cochin, INSERM U567, CNRS UMR 8104, Université Paris V, Paris, France.

出版信息

EMBO J. 2006 Jan 25;25(2):357-66. doi: 10.1038/sj.emboj.7600934. Epub 2006 Jan 12.

Abstract

The passage from proliferation to terminal differentiation is critical for normal development and is often perturbed in malignancies. To define the molecular mechanisms that govern this process during erythropoiesis, we have used tagging/proteomics approaches and characterized protein complexes nucleated by TAL-1/SCL, a basic helix-loop-helix transcription factor that specifies the erythrocytic lineage. In addition to known TAL-1 partners, GATA-1, E2A, HEB, LMO2 and Ldb1, we identify the ETO2 repressor as a novel component recruited to TAL-1 complexes through interaction with E2A/HEB. Ectopic expression and siRNA knockdown experiments in hematopoietic progenitor cells show that ETO2 actively represses erythroid TAL-1 target genes and governs the expansion of erythroid progenitors. At the onset of erythroid differentiation, a change in the stoichiometry of ETO2 within the TAL-1 complex activates the expression of known erythroid-specific TAL-1 target genes and of Gfi-1b and p21(Cip), encoding two essential regulators of erythroid cell proliferation. These results suggest that the dynamics of ETO2 recruitment within nuclear complexes couple cell proliferation to cell differentiation and determine the onset of terminal erythroid maturation.

摘要

从增殖到终末分化的转变对于正常发育至关重要,且在恶性肿瘤中常常受到干扰。为了确定在红细胞生成过程中调控这一过程的分子机制,我们采用了标记/蛋白质组学方法,并对由TAL-1/SCL形成核心的蛋白质复合物进行了表征,TAL-1/SCL是一种指定红细胞谱系的碱性螺旋-环-螺旋转录因子。除了已知的TAL-1伙伴GATA-1、E2A、HEB、LMO2和Ldb1外,我们还鉴定出ETO2阻遏物是通过与E2A/HEB相互作用而被招募到TAL-1复合物中的一种新成分。造血祖细胞中的异位表达和siRNA敲低实验表明,ETO2可积极抑制红系TAL-1靶基因,并控制红系祖细胞的扩增。在红系分化开始时,TAL-1复合物中ETO2化学计量的变化激活了已知的红系特异性TAL-1靶基因以及Gfi-1b和p21(Cip)的表达,后者编码红系细胞增殖的两个关键调节因子。这些结果表明,核复合物中ETO2招募的动态变化将细胞增殖与细胞分化联系起来,并决定了红系终末成熟的起始。

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