Dipartimento di Fisica e Geologia, Università degli Studi di Perugia, 06123 Perugia, Italy.
IOM-CNR c/o Department of Physics and Geology, Università degli Studi di Perugia, 06123 Perugia, Italy.
Int J Mol Sci. 2022 May 4;23(9):5123. doi: 10.3390/ijms23095123.
G-quadruplexes (G4s) are noncanonical forms of DNA involved in many key genome functions. Here, we exploited UV Resonance Raman scattering to simultaneously explore the vibrational behavior of a human telomeric G4 (Tel22) and its aqueous solvent as the biomolecule underwent thermal melting. We found that the OH stretching band, related to the local hydrogen-bonded network of a water molecule, was in strict relation with the vibrational features of the G4 structure as a function of temperature. In particular, the modifications to the tetrahedral ordering of the water network were strongly coupled to the DNA rearrangements, showing changes in temperature that mirrored the multi-step melting process of Tel22. The comparison between circular dichroism and Raman results supported this view. The present findings provide novel insights into the impact of the molecular environment on G4 conformation. Improving current knowledge on the solvent structural properties will also contribute to a better understanding of the role played by water arrangement in the complexation of G4s with ligands.
G-四链体(G4s)是参与许多关键基因组功能的非经典形式的 DNA。在这里,我们利用紫外共振拉曼散射技术,同时探索了人类端粒 G4(Tel22)及其水溶剂的振动行为,因为该生物分子经历了热融解。我们发现,与水分子局部氢键网络有关的 OH 伸缩带,作为温度的函数,与 G4 结构的振动特征密切相关。特别是,水网络的四面体有序性的改变与 DNA 重排强烈耦合,其温度变化反映了 Tel22 的多步融解过程。圆二色性和拉曼结果的比较支持了这一观点。目前的研究结果为环境对 G4 构象的影响提供了新的见解。提高对溶剂结构特性的现有认识,也将有助于更好地理解在 G4 与配体的络合过程中,水排列所起的作用。