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通过核磁共振光谱揭示的p53 DNA结合结构域野生型和DNA接触突变体之间主链动力学的内在差异

Intrinsic Differences in Backbone Dynamics between Wild Type and DNA-Contact Mutants of the p53 DNA Binding Domain Revealed by Nuclear Magnetic Resonance Spectroscopy.

作者信息

Rasquinha Juhi A, Bej Aritra, Dutta Shraboni, Mukherjee Sujoy

机构信息

Structural Biology and Bioinformatics Division, CSIR-Indian Institute of Chemical Biology , Kolkata, West Bengal 700032, India.

出版信息

Biochemistry. 2017 Sep 19;56(37):4962-4971. doi: 10.1021/acs.biochem.7b00514. Epub 2017 Sep 7.

Abstract

Mutations in p53's DNA binding domain (p53DBD) are associated with 50% of all cancers, making it an essential system to investigate and understand the genesis and progression of cancer. In this work, we studied the changes in the structure and dynamics of wild type p53DBD in comparison with two of its "hot-spot" DNA-contact mutants, R248Q and R273H, by analysis of backbone amide chemical shift perturbations and N spin relaxation measurements. The results of amide chemical shift changes indicated significantly more perturbations in the R273H mutant than in wild type and R248Q p53DBD. Analysis of N spin relaxation rates and the resulting nuclear magnetic resonance order parameters suggests that for most parts, the R248Q mutant exhibits limited conformational flexibility and is similar to the wild type protein. In contrast, R273H showed significant backbone dynamics extending up to its β-sandwich scaffold in addition to motions along the DNA binding interface. Furthermore, comparison of rotational correlation times between the mutants suggests that the R273H mutant, with a higher correlation time, forms an enlarged structural fold in comparison to the R248Q mutant and wild type p53DBD. Finally, we identify three regions in these proteins that show conformational flexibility to varying degrees, which suggests that the R273H mutant, in addition to being a DNA-contact mutation, exhibits properties of a conformational mutant.

摘要

p53的DNA结合结构域(p53DBD)中的突变与所有癌症的50%相关,这使其成为研究和理解癌症发生与发展的重要系统。在这项工作中,我们通过分析主链酰胺化学位移扰动和N自旋弛豫测量,研究了野生型p53DBD与其两个“热点”DNA接触突变体R248Q和R273H相比的结构和动力学变化。酰胺化学位移变化的结果表明,R273H突变体中的扰动比野生型和R248Q p53DBD中的显著更多。对N自旋弛豫率和由此产生的核磁共振序参量的分析表明,在大多数情况下,R248Q突变体表现出有限的构象灵活性,与野生型蛋白相似。相比之下,R273H除了沿DNA结合界面运动外,还显示出延伸至其β-三明治支架的显著主链动力学。此外,突变体之间旋转相关时间的比较表明,与R248Q突变体和野生型p53DBD相比,具有更高相关时间的R273H突变体形成了更大的结构折叠。最后,我们在这些蛋白质中确定了三个显示出不同程度构象灵活性的区域,这表明R273H突变体除了是DNA接触突变外,还表现出构象突变体的特性。

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