Bespalova Maria, Behjatian Ali, Karedla Narain, Walker-Gibbons Rowan, Krishnan Madhavi
Physical and Theoretical Chemistry Laboratory, Department of Chemistry, University of Oxford, South Parks Road, Oxford OX1 3QZ, U.K.
Macromolecules. 2022 Jul 26;55(14):6200-6210. doi: 10.1021/acs.macromol.2c00657. Epub 2022 Jul 1.
A DNA molecule is highly electrically charged in solution. The electrical potential at the molecular surface is known to vary strongly with the local geometry of the double helix and plays a pivotal role in DNA-protein interactions. Further out from the molecular surface, the electrical field propagating into the surrounding electrolyte bears fingerprints of the three-dimensional arrangement of the charged atoms in the molecule. However, precise extraction of the structural information encoded in the electrostatic "far field" has remained experimentally challenging. Here, we report an optical microscopy-based approach that detects the field distribution surrounding a charged molecule in solution, revealing geometric features such as the radius and the average rise per basepair of the double helix with up to sub-Angstrom precision, comparable with traditional molecular structure determination techniques like X-ray crystallography and nuclear magnetic resonance. Moreover, measurement of the helical radius furnishes an unprecedented view of both hydration and the arrangement of cations at the molecule-solvent interface. We demonstrate that a probe in the electrostatic far field delivers structural and chemical information on macromolecules, opening up a new dimension in the study of charged molecules and interfaces in solution.
DNA分子在溶液中带有很高的电荷。已知分子表面的电势会随着双螺旋的局部几何形状而强烈变化,并且在DNA与蛋白质的相互作用中起着关键作用。在离分子表面更远的地方,传播到周围电解质中的电场带有分子中带电原子三维排列的特征。然而,从静电“远场”中精确提取编码的结构信息在实验上仍然具有挑战性。在这里,我们报告了一种基于光学显微镜的方法,该方法可以检测溶液中带电分子周围的场分布,揭示诸如双螺旋的半径和每碱基对的平均上升高度等几何特征,精度可达亚埃级别,与X射线晶体学和核磁共振等传统分子结构测定技术相当。此外,对螺旋半径的测量提供了关于分子-溶剂界面处水合作用和阳离子排列的前所未有的视图。我们证明,静电远场中的一个探针能够提供关于大分子的结构和化学信息,为溶液中带电分子和界面的研究开辟了一个新的维度。