Monsen Robert C, Sabo T Michael, Gray Robert, Hopkins Jesse B, Chaires Jonathan B
Department of Medicine, UofL Health Brown Cancer Center, University of Louisville, Louisville KY, 505 S Hancock St, Louisville, KY 40202.
The Biophysics Collaborative Access Team (BioCAT) Department of Physics, Illinois Institute of Technology, Chicago, IL 60616.
bioRxiv. 2024 Sep 8:2024.09.05.611539. doi: 10.1101/2024.09.05.611539.
Time-resolved small-angle X-ray experiments (TR-SAXS) are reported here that capture and quantify a previously unknown rapid collapse of the unfolded oligonucleotide as an early step in G4 folding of hybrid 1 and hybrid 2 telomeric G-quadruplex structures. The rapid collapse, initiated by a pH jump, is characterized by an exponential decrease in the radius of gyration from 20.6 to 12.6 Å. The collapse is monophasic and is complete in less than 600 ms. Additional hand-mixing pH-jump kinetic studies show that slower kinetic steps follow the collapse. The folded and unfolded states at equilibrium were further characterized by SAXS studies and other biophysical tools, to show that G4 unfolding was complete at alkaline pH, but not in LiCl solution as is often claimed. The SAXS Ensemble Optimization Method (EOM) analysis reveals models of the unfolded state as a dynamic ensemble of flexible oligonucleotide chains with a variety of transient hairpin structures. These results suggest a G4 folding pathway in which a rapid collapse, analogous to molten globule formation seen in proteins, is followed by a confined conformational search within the collapsed particle to form the native contacts ultimately found in the stable folded form.
本文报道了时间分辨小角X射线实验(TR-SAXS),该实验捕捉并量化了未折叠寡核苷酸先前未知的快速塌缩,这是杂交1和杂交2端粒G-四链体结构G4折叠的早期步骤。由pH值跃升引发的快速塌缩的特征是回转半径从20.6 Å呈指数下降至12.6 Å。塌缩是单相的,在不到600毫秒内完成。额外的手动混合pH值跃升动力学研究表明,较慢的动力学步骤在塌缩之后出现。通过SAXS研究和其他生物物理工具进一步表征了平衡时的折叠态和未折叠态,结果表明G4在碱性pH值下完全展开,但并非如通常所声称的那样在LiCl溶液中完全展开。SAXS系综优化方法(EOM)分析揭示了未折叠态的模型是具有各种瞬时发夹结构的柔性寡核苷酸链的动态系综。这些结果表明了一种G4折叠途径,其中类似于蛋白质中观察到的熔球态形成的快速塌缩之后,在塌缩颗粒内进行受限的构象搜索,以形成最终在稳定折叠形式中发现的天然接触。