Department of Pharmacy, University of Naples Federico II, Naples, I-80131, Italy.
Elettra-Sincrotrone Trieste S. C. p. A., Science Park, Trieste, I-34149, Italy.
Phys Chem Chem Phys. 2022 Mar 16;24(11):7028-7044. doi: 10.1039/d2cp00058j.
The promoter regions of important oncogenes such as and contain GC-rich sequences that can form distinctive noncanonical DNA structures involved in the regulation of transcription: G-quadruplexes on the G-rich strand and i-motifs on the C-rich strand. Interestingly, and promoter i-motifs are highly dynamic in nature and exist in a pH-dependent equilibrium with hairpin and even with hybrid i-motif/hairpin species. Herein, the effects of pH and presence of cell-mimicking molecular crowding conditions on conformational equilibria of the and i-motif-forming sequences were investigated by ultraviolet resonance Raman (UVRR) and circular dichroism (CD) spectroscopies. Multivariate analysis of CD data was essential to model the presence and identity of the species involved. Analysis of UVRR spectra measured as a function of pH, performed also by the two-dimensional correlation spectroscopy (2D-COS) technique, showed the role of several functional groups in the DNA conformational transitions, and provided structural and dynamic information. Thus, the UVRR investigation of intramolecular interactions and of local and environmental dynamics in promoting the different species induced by the solution conditions provided valuable insights into i-motif conformational transitions. The combined use of the two spectroscopic tools is emphasized by the relevant possibility of working in the same DNA concentration range and by the heterospectral UVRR/CD 2D-COS analysis. The results of this study shed light on the factors that can influence at the molecular level the equilibrium between the different conformational species putatively involved in the oncogene expression.
重要癌基因的启动子区域,如 和 ,含有富含 GC 的序列,这些序列可以形成独特的非canonical DNA 结构,参与转录调控:富含 G 的链上的 G-四链体和富含 C 的链上的 i- 基序。有趣的是, 和 启动子 i- 基序在本质上是高度动态的,存在与发夹结构甚至杂交 i- 基序/发夹结构物种的 pH 依赖平衡中。在此,通过紫外共振拉曼(UVRR)和圆二色性(CD)光谱法研究了 pH 和模拟细胞的分子拥挤条件对 和 形成 i- 基序序列构象平衡的影响。CD 数据的多元分析对于构建涉及物种的存在和身份至关重要。作为 pH 函数测量的 UVRR 光谱分析,也通过二维相关光谱(2D-COS)技术进行,显示了几个功能基团在 DNA 构象转变中的作用,并提供了结构和动态信息。因此,通过 UVRR 研究分子内相互作用以及溶液条件诱导的不同物种的局部和环境动力学,为 i- 基序构象转变提供了有价值的见解。两种光谱工具的联合使用强调了在相同 DNA 浓度范围内工作的相关可能性,以及异光谱 UVRR/CD 2D-COS 分析。这项研究的结果阐明了可以在分子水平上影响假定参与癌基因表达的不同构象物种之间平衡的因素。