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首页> 外文期刊>Molecular cell >Use of altered specificity mutants to probe a specific protein-protein interaction in differentiation: the GATA-1:FOG complex.
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Use of altered specificity mutants to probe a specific protein-protein interaction in differentiation: the GATA-1:FOG complex.

机译:使用改变的特异性突变体来探测分化中的特定蛋白质-蛋白质相互作用:GATA-1:FOG复合物。

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摘要

GATA-1 and FOG (Friend of GATA-1) are each essential for erythroid and megakaryocyte development. FOG, a zinc finger protein, interacts with the amino (N) finger of GATA-1 and cooperates with GATA-1 to promote differentiation. To determine whether this interaction is critical for GATA-1 action, we selected GATA-1 mutants in yeast that fail to interact with FOG but retain normal DNA binding, as well a compensatory FOG mutant that restores interaction. These novel GATA-1 mutants do not promote erythroid differentiation of GATA-1- erythroid cells. Differentiation is rescued by the second-site FOG mutant. Thus, interaction of FOG with GATA-1 is essential for the function of GATA-1 in erythroid differentiation. These findings provide a paradigm for dissecting protein-protein associations involved in mammalian development.
机译:GATA-1和FOG(GATA-1之友)对于红系和巨核细胞的发育都是必不可少的。锌指蛋白FOG与GATA-1的氨基(N)指相互作用,并与GATA-1协同促进分化。为了确定这种相互作用是否对GATA-1动作至关重要,我们在酵母中选择了无法与FOG相互作用但保留正常DNA结合的GATA-1突变体,以及恢复相互作用的补偿性FOG突变体。这些新颖的GATA-1突变体不会促进GATA-1-红系细胞的红系分化。通过第二位FOG突变体可以挽救分化。因此,FOG与GATA-1的相互作用对于GATA-1在红系分化中的功能至关重要。这些发现为解剖涉及哺乳动物发育的蛋白质-蛋白质关联提供了范例。

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