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Interactions of p53 with poly(ADP-ribose) and DNA induce distinct changes in protein structure as revealed by ATR-FTIR spectroscopy

机译:p53与聚(ADP-核糖)和DNA的相互作用诱导了蛋白质结构的明显变化如ATR-FTIR光谱所揭示的

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摘要

Due to multiple domains and in part intrinsically disordered regions, structural analyses of p53 remain a challenging task, particularly in complex with DNA and other macromolecules. Here, we applied a novel attenuated total reflection Fourier transform infrared (ATR-FTIR) spectroscopic approach to investigate changes in secondary structure of full-length p53 induced by non-covalent interactions with DNA and poly(ADP-ribose) (PAR). To validate our approach, we confirmed a positive regulatory function of p53’s C-terminal domain (CTD) with regard to sequence-specific DNA binding and verified that the CTD mediates p53–PAR interaction. Further, we demonstrate that DNA and PAR interactions result in distinct structural changes of p53, indicating specific binding mechanisms via different domains. A time-dependent analysis of the interplay of DNA and PAR binding to p53 revealed that PAR represents p53’s preferred binding partner, which efficiently controls p53–DNA interaction. Moreover, we provide infrared spectroscopic data on PAR pointing to the absence of regular secondary structural elements. Finally, temperature-induced melting experiments via CD spectroscopy show that DNA binding stabilizes the structure of p53, while PAR binding can shift the irreversible formation of insoluble p53 aggregates to higher temperatures. In conclusion, this study provides detailed insights into the dynamic interplay of p53 binding to DNA and PAR at a formerly inaccessible molecular level.
机译:由于存在多个结构域,部分存在固有的无序区域,因此对p53的结构分析仍然是一项艰巨的任务,尤其是在与DNA和其他大分子复合的情况下。在这里,我们应用了新型的衰减全反射傅立叶变换红外光谱(ATR-FTIR)光谱方法,研究了与DNA和聚(ADP-核糖)(PAR)的非共价相互作用引起的全长p53二级结构的变化。为了验证我们的方法,我们确认了p53的C末端域(CTD)在序列特异性DNA结合方面的正调节功能,并验证了CTD介导了p53-PAR相互作用。此外,我们证明DNA和PAR相互作用导致p53的结构发生明显变化,表明通过不同结构域的特异性结合机制。对DNA和PAR与p53结合的相互作用的时间依赖性分析表明,PAR代表p53的首选结合伴侣,可有效控制p53-DNA的相互作用。此外,我们提供了有关PAR的红外光谱数据,表明没有常规的二级结构元素。最后,通过CD光谱进行的温度诱导解链实验表明,DNA结合稳定了p53的结构,而PAR结合可以将不可溶的p53聚集体的不可逆形成转移到更高的温度。总之,这项研究为p53与DNA和PAR在以前无法接近的分子水平上的动态相互作用提供了详细的见解。

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