Biophysics & Nanoscience Centre, DEB, Università della Tuscia, 01100 Viterbo, Italy.
Int J Mol Sci. 2019 Jun 24;20(12):3078. doi: 10.3390/ijms20123078.
Raman spectroscopy, which is a suitable tool to elucidate the structural properties of intrinsically disordered proteins, was applied to investigate the changes in both the structure and the conformational heterogeneity of the DNA-binding domain (DBD) belonging to the intrinsically disordered protein p53 upon its binding to Azurin, an electron-transfer anticancer protein from . The Raman spectra of the DBD and Azurin, isolated in solution or forming a complex, were analyzed by a combined analysis based on peak inspection, band convolution, and principal component analysis (PCA). In particular, our attention was focused on the Raman peaks of Tyrosine and Tryptophan residues, which are diagnostic markers of protein side chain environment, and on the Amide I band, of which the deconvolution allows us to extract information about α-helix, β-sheet, and random coil contents. The results show an increase of the secondary structure content of DBD concomitantly with a decrease of its conformational heterogeneity upon its binding to Azurin. These findings suggest an Azurin-induced conformational change of DBD structure with possible implications for p53 functionality.
拉曼光谱是一种阐明无规卷曲蛋白质结构特性的合适工具,本研究应用它来研究 p53 蛋白的 DNA 结合域(DBD)与来自蓝藻的电子传递抗癌蛋白菌绿素有结合作用时,结构和构象异质性的变化。在溶液中或形成复合物时,DBD 和菌绿素有各自的拉曼光谱,通过基于峰检测、波段卷积和主成分分析(PCA)的综合分析对它们进行了分析。特别关注色氨酸和酪氨酸残基的拉曼峰,它们是蛋白质侧链环境的诊断标记,以及酰胺 I 带,其去卷积可以提取有关α-螺旋、β-折叠和无规卷曲含量的信息。结果表明,DBD 的二级结构含量增加,与菌绿素有结合作用时的构象异质性降低。这些发现表明,DBD 结构在菌绿素有诱导下发生构象变化,这可能对 p53 的功能有影响。