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转录延伸调节因子CA150的三个串联FF结构域的晶体结构

Crystal structure of the three tandem FF domains of the transcription elongation regulator CA150.

作者信息

Lu Ming, Yang Jun, Ren Zhiyong, Sabui Subir, Espejo Alexsandra, Bedford Mark T, Jacobson Raymond H, Jeruzalmi David, McMurray John S, Chen Xiaomin

机构信息

Department of Biochemistry and Molecular Biology, University of Texas M. D. Anderson Cancer Center, Houston, 77030, USA.

出版信息

J Mol Biol. 2009 Oct 23;393(2):397-408. doi: 10.1016/j.jmb.2009.07.086. Epub 2009 Aug 4.

Abstract

FF domains are small protein-protein interaction modules that have two flanking conserved phenylalanine residues. They are present in proteins involved in transcription, RNA splicing, and signal transduction, and often exist in tandem arrays. Although several individual FF domain structures have been determined by NMR, the tandem nature of most FF domains has not been revealed. Here we report the 2.7-A-resolution crystal structure of the first three FF domains of the human transcription elongation factor CA150. Each FF domain is composed of three alpha-helices and a 3(10) helix between alpha-helix 2 and alpha-helix 3. The most striking feature of the structure is that an FF domain is connected to the next by an alpha-helix that continues from helix 3 to helix 1 of the next. The consequent elongated arrangement allows exposure of many charged residues within the region that can be engaged in interaction with other molecules. Binding studies using a peptide ligand suggest that a specific conformation of the FF domains might be required to achieve higher-affinity binding. Additionally, we explore potential DNA binding of the FF construct used in this study. Overall, we provide the first crystal structure of an FF domain and insights into the tandem nature of the FF domains and suggest that, in addition to protein binding, FF domains might be involved in DNA binding.

摘要

FF 结构域是小的蛋白质 - 蛋白质相互作用模块,有两个侧翼保守苯丙氨酸残基。它们存在于参与转录、RNA 剪接和信号转导的蛋白质中,且常以串联阵列形式存在。尽管通过核磁共振已确定了几个单独的 FF 结构域结构,但大多数 FF 结构域的串联性质尚未揭示。在此我们报道了人类转录延伸因子 CA150 的前三个 FF 结构域的 2.7 埃分辨率晶体结构。每个 FF 结构域由三个α - 螺旋以及α - 螺旋 2 和α - 螺旋 3 之间的一个 3(10)螺旋组成。该结构最显著的特征是一个 FF 结构域通过一个从螺旋 3 延续到下一个螺旋 1 的α - 螺旋与下一个相连。由此产生的细长排列使得该区域内许多带电荷的残基得以暴露,这些残基可与其他分子相互作用。使用肽配体的结合研究表明,可能需要 FF 结构域的特定构象才能实现更高亲和力的结合。此外,我们探索了本研究中使用的 FF 构建体与 DNA 的潜在结合。总体而言,我们提供了 FF 结构域的首个晶体结构,并深入了解了 FF 结构域的串联性质,表明除了蛋白质结合外,FF 结构域可能还参与 DNA 结合。

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