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FOG家族的转录辅因子通过多个锌指与GATA蛋白相互作用。

Transcriptional cofactors of the FOG family interact with GATA proteins by means of multiple zinc fingers.

作者信息

Fox A H, Liew C, Holmes M, Kowalski K, Mackay J, Crossley M

机构信息

Department of Biochemistry, G08, University of Sydney, NSW, 2006, Australia.

出版信息

EMBO J. 1999 May 17;18(10):2812-22. doi: 10.1093/emboj/18.10.2812.

Abstract

Friend of GATA-1 (FOG-1) is a zinc finger protein that has been shown to interact physically with the erythroid DNA-binding protein GATA-1 and modulate its transcriptional activity. Recently, two new members of the FOG family have been identified: a mammalian protein, FOG-2, that also associates with GATA-1 and other mammalian GATA factors; and U-shaped, a Drosophila protein that interacts with the Drosophila GATA protein Pannier. FOG proteins contain multiple zinc fingers and it has been shown previously that the sixth finger of FOG-1 interacts specifically with the N-finger but not the C-finger of GATA-1. Here we show that fingers 1, 5 and 9 of FOG-1 also interact with the N-finger of GATA-1 and that FOG-2 and U-shaped also contain multiple GATA-interacting fingers. We define the key contact residues and show that these residues are highly conserved in GATA-interacting fingers. We examine the effect of selectively mutating the four interacting fingers of FOG-1 and show that each contributes to FOG-1's ability to modulate GATA-1 activity. Finally, we show that FOG-1 can repress GATA-1-mediated activation and present evidence that this ability involves the recently described CtBP co-repressor proteins that recognize all known FOG proteins.

摘要

GATA-1结合因子(FOG-1)是一种锌指蛋白,已被证明可与红系DNA结合蛋白GATA-1发生物理相互作用,并调节其转录活性。最近,已鉴定出FOG家族的两个新成员:一种哺乳动物蛋白FOG-2,它也与GATA-1和其他哺乳动物GATA因子相关联;以及U-shaped,一种与果蝇GATA蛋白Pannier相互作用的果蝇蛋白。FOG蛋白含有多个锌指,先前已表明FOG-1的第六个锌指与GATA-1的N端锌指而非C端锌指特异性相互作用。在此我们表明,FOG-1的第1、5和9个锌指也与GATA-1的N端锌指相互作用,并且FOG-2和U-shaped也含有多个与GATA相互作用的锌指。我们确定了关键的接触残基,并表明这些残基在与GATA相互作用的锌指中高度保守。我们研究了选择性突变FOG-1的四个相互作用锌指的效果,结果表明每个锌指都有助于FOG-1调节GATA-1活性的能力。最后,我们表明FOG-1可以抑制GATA-1介导的激活,并提供证据表明这种能力涉及最近描述的CtBP共抑制蛋白,该蛋白可识别所有已知的FOG蛋白。

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