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Analysis of homeodomain function by structure-based design of a transcription factor.

机译:通过基于结构的转录因子设计分析同源域功能。

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摘要

The homeodomain is a 60-amino acid module which mediates critical protein-DNA and protein-protein interactions for a large family of regulatory proteins. We have used structure-based design to analyze the ability of the Oct-1 homeodomain to nucleate an enhancer complex. The Oct-1 protein regulates herpes simplex virus (HSV) gene expression by participating in the formation of a multiprotein complex (C1 complex) which regulates alpha (immediate early) genes. We recently described the design of ZFHD1, a chimeric transcription factor containing zinc fingers 1 and 2 of Zif268, a four-residue linker, and the Oct-1 homeodomain. In the presence of alpha-transinduction factor and C1 factor, ZFHD1 efficiently nucleates formation of the C1 complex in vitro and specifically activates gene expression in vivo. The sequence specificity of ZFHD1 recruits C1 complex formation to an enhancer element which is not efficiently recognized by Oct-1. ZFHD1 function depends on the recognition of the Oct-1 homeodomain surface. These results prove that the Oct-1 homeodomain mediates all the protein-protein interactions that are required to efficiently recruit alpha-transinduction factor and C1 factor into a C1 complex. The structure-based design of transcription factors should provide valuable tools for dissecting the interactions of DNA-bound domains in other regulatory circuits.
机译:同源结构域是一个60个氨基酸的模块,可介导大量调节蛋白家族的关键蛋白质-DNA和蛋白质-蛋白质相互作用。我们已经使用基于结构的设计来分析Oct-1同源域成核增强子复合体的能力。 Oct-1蛋白通过参与形成多蛋白复合物(C1复合物)来调节单纯疱疹病毒(HSV)基因表达,该复合物可调节alpha(立即早期)基因。我们最近描述了ZFHD1(一种包含Zif268的锌指1和2,四个残基的连接子以及Oct-1同源域)的嵌合转录因子的设计。在存在α转导因子和C1因子的情况下,ZFHD1在体外有效成核C1复合物的形成,并在体内特异性激活基因表达。 ZFHD1的序列特异性将C1复合物的形成募集到增强子元件上,该元件不能被Oct-1有效识别。 ZFHD1功能取决于对Oct-1同源域表面的识别。这些结果证明,Oct-1同源结构域介导了有效募集α-转导因子和C1因子进入C1复合体所需的所有蛋白质-蛋白质相互作用。转录因子的基于结构的设计应提供有价值的工具,用于剖析其他调控回路中DNA结合域的相互作用。

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