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Structural Basis for p300 Taz2-p53 TAD1 Binding and Modulation by Phosphorylation

机译:p300 Taz2-p53 TAD1结合和磷酸化调节的结构基础。

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摘要

Coactivators CREB-binding protein and p300 play important roles in mediating the transcriptional activity of p53. Until now, however, no detailed structural information has been available on how any of the domains of p300 interact with p53. Here, we report the NMR structure of the complex of the Taz2 (C/H3) domain of p300 and the N-terminal transactivation domain of p53. In the complex, p53 forms a short alpha helix and interacts with the Taz2 domain through an extended surface. Mutational analyses demonstrate the importance of hydrophobic residues for complex stabilization. Additionally, they suggest that the increased affinity of Taz2 for p531-39 phosphorylated at Thr(18) is due in part to electrostatic interactions of the phosphate with neighboring arginine residues in Taz2. Thermodynamic experiments revealed the importance of hydrophobic interactions in the complex of Taz2 with p53 phosphorylated at Ser(15) and Thr(18).
机译:共激活因子CREB结合蛋白和p300在介导p53的转录活性中起重要作用。但是,到目前为止,还没有关于p300的任何域如何与p53相互作用的详细结构信息。在这里,我们报道了p300的Taz2(C / H3)域和p53的N末端反式激活域的复合物的NMR结构。在复合物中,p53形成短的α螺旋,并通过延伸的表面与Taz2结构域相互作用。突变分析证明了疏水残基对于复杂稳定化的重要性。此外,他们建议增加Taz2对在Thr(18)磷酸化的p531-39的亲和力,部分归因于磷酸盐与Taz2中邻近的精氨酸残基的静电相互作用。热力学实验表明,Taz2与p53在Ser(15)和Thr(18)磷酸化的复合物中疏水相互作用的重要性。

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