Miller Maria, Dauter Zbigniew, Cherry Scott, Tropea Joseph E, Wlodawer Alexander
Protein Structure Section, Macromolecular Crystallography Laboratory, NCI-Frederick, Frederick, Maryland 21702-1201, USA.
Acta Crystallogr D Biol Crystallogr. 2009 Dec;65(Pt 12):1301-8. doi: 10.1107/S0907444909040153. Epub 2009 Nov 17.
CBP and its paralog p300 are histone acetyl transferases that regulate gene expression by interacting with multiple transcription factors via specialized domains. The structure of a segment of human p300 protein (residues 1723-1836) corresponding to the extended zinc-binding Taz2 domain has been investigated. The crystal structure was solved by the SAD approach utilizing the anomalous diffraction signal of the bound Zn ions. The structure comprises an atypical helical bundle stabilized by three Zn ions and closely resembles the solution structures determined previously for shorter peptides. Residues 1813-1834 from the current construct form a helical extension of the C-terminal helix and make extensive crystal-contact interactions with the peptide-binding site of Taz2, providing additional insights into the mechanism of the recognition of diverse transactivation domains (TADs) by Taz2. On the basis of these results and molecular modeling, a hypothetical model of the binding of phosphorylated p53 TAD1 to Taz2 has been proposed.
CBP及其旁系同源物p300是组蛋白乙酰转移酶,它们通过特定结构域与多种转录因子相互作用来调节基因表达。已对人p300蛋白对应于扩展锌结合Taz2结构域的一段(残基1723 - 1836)进行了结构研究。利用结合锌离子的反常衍射信号,通过单波长反常散射(SAD)方法解析了晶体结构。该结构由三个锌离子稳定的非典型螺旋束组成,与先前确定的较短肽段的溶液结构非常相似。当前构建体中的残基1813 - 1834形成了C末端螺旋的螺旋延伸,并与Taz2的肽结合位点进行广泛的晶体接触相互作用,为Taz2识别多种反式激活结构域(TADs)的机制提供了更多见解。基于这些结果和分子模拟,提出了磷酸化p53 TAD1与Taz2结合的假设模型。