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与单域抗体结合的人MDM4 N端结构域的结构

Structure of human MDM4 N-terminal domain bound to a single-domain antibody.

作者信息

Yu Grace W, Vaysburd Marina, Allen Mark D, Settanni Giovanni, Fersht Alan R

机构信息

Centre for Protein Engineering, Medical Research Council, Cambridge, UK.

出版信息

J Mol Biol. 2009 Feb 6;385(5):1578-89. doi: 10.1016/j.jmb.2008.11.043. Epub 2008 Nov 30.

Abstract

The N-terminal domain of MDM4 binds to the N-terminal transactivation domain of the tumor suppressor p53 and is an important negative regulator of its transactivation activity. As such, inhibition of the binding of MDM4 to p53 is a target for anticancer therapy. The protein has not been crystallized satisfactorily for structural studies without the addition of an N-terminal p53 peptide. We selected a single-domain antibody (VH9) that bound to the human domain with a dissociation constant of 44 nM. We solved the structure of the complex at 2.0-A resolution. The asymmetric unit contained eight molecules of VH9 and four molecules of MDM4. A molecule of VH9 was located in each transactivation domain binding site, and the four non-MDM4-bound VH9 domains provided additional crystal contacts. There are differences between the structures of human MDM4 domain bound to VH9 and those of human and zebra fish MDM4 bound to a p53 peptide. Molecular dynamics simulations showed that the binding pocket in the three MDM4 structures converged to a common conformation after removal of the ligands, indicating that the differences are due to induced fit. The largest conformational changes were for the MDM4 molecules bound to p53. The simulated and observed structures should aid rational drug design. The use of single-domain antibodies to aid crystallization by creating a molecular scaffold may have a wider range of applications.

摘要

MDM4的N端结构域与肿瘤抑制因子p53的N端反式激活结构域结合,是其反式激活活性的重要负调控因子。因此,抑制MDM4与p53的结合是抗癌治疗的一个靶点。在不添加N端p53肽的情况下,该蛋白尚未得到用于结构研究的理想晶体。我们筛选出一种单域抗体(VH9),它与人结构域结合的解离常数为44 nM。我们以2.0 Å的分辨率解析了该复合物的结构。不对称单元包含八个VH9分子和四个MDM4分子。每个反式激活结构域结合位点中有一个VH9分子,四个未与MDM4结合的VH9结构域提供了额外的晶体接触。与VH9结合的人MDM4结构域的结构,与人及斑马鱼中与p53肽结合的MDM4结构域的结构存在差异。分子动力学模拟表明,去除配体后,三种MDM4结构中的结合口袋收敛到一个共同构象,这表明差异是由诱导契合引起的。与p53结合的MDM4分子的构象变化最大。模拟结构和观测结构应有助于合理的药物设计。利用单域抗体通过构建分子支架辅助结晶可能具有更广泛的应用。

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