Bhaumik Prasenjit, Davis Jamaine, Tropea Joseph E, Cherry Scott, Johnson Peter F, Miller Maria
Protein Structure Section, Macromolecular Crystallography Laboratory, National Cancer Institute at Frederick, Frederick, MD 21702, USA.
Protein Purification Core, Macromolecular Crystallography Laboratory, National Cancer Institute at Frederick, Frederick, MD 21702, USA.
Acta Crystallogr D Biol Crystallogr. 2014 Jul;70(Pt 7):1914-21. doi: 10.1107/S1399004714009262. Epub 2014 Jun 29.
Members of the C/EBP family of transcription factors bind to the Taz2 domain of p300/CBP and mediate its phosphorylation through the recruitment of specific kinases. Short sequence motifs termed homology boxes A and B, which comprise their minimal transactivation domains (TADs), are conserved between C/EBP activators and are necessary for specific p300/CBP binding. A possible mode of interaction between C/EBP TADs and the p300 Taz2 domain was implied by the crystal structure of a chimeric protein composed of residues 1723-1818 of p300 Taz2 and residues 37-61 of C/EBPℇ. The segment corresponding to the C/EBPℇ TAD forms two orthogonally disposed helices connected by a short linker and interacts with the core structure of Taz2 from a symmetry-related molecule. It is proposed that other members of the C/EBP family interact with the Taz2 domain in the same manner. The position of the C/EBPℇ peptide on the Taz2 protein interaction surface suggests that the N-termini of C/EBP proteins are unbound in the C/EBP-p300 Taz2 complex. This observation is in agreement with the known location of the docking site of protein kinase HIPK2 in the C/EBPβ N-terminus, which associates with the C/EBPβ-p300 complex.
转录因子C/EBP家族的成员与p300/CBP的Taz2结构域结合,并通过募集特定激酶介导其磷酸化。被称为同源框A和B的短序列基序构成了它们的最小反式激活结构域(TAD),在C/EBP激活因子之间是保守的,并且是特异性p300/CBP结合所必需的。由p300 Taz2的1723 - 1818位残基和C/EBPε的37 - 61位残基组成的嵌合蛋白的晶体结构暗示了C/EBP TAD与p300 Taz2结构域之间可能的相互作用模式。对应于C/EBPε TAD的片段形成两个由短连接子连接的正交排列的螺旋,并与来自对称相关分子的Taz2核心结构相互作用。有人提出C/EBP家族的其他成员以相同方式与Taz2结构域相互作用。C/EBPε肽在Taz2蛋白相互作用表面上的位置表明,C/EBP蛋白的N末端在C/EBP - p300 Taz2复合物中未结合。这一观察结果与蛋白激酶HIPK2在C/EBPβ N末端的对接位点的已知位置一致,该位点与C/EBPβ - p300复合物相关联。