Desai Parth Rakesh, Marko John F
Department of Molecular Biosciences, Northwestern University, Evanston, Illinois 60208, USA.
Department of Physics and Astronomy, Northwestern University, Evanston, Illinois 60208, USA.
bioRxiv. 2025 Apr 3:2024.12.11.628023. doi: 10.1101/2024.12.11.628023.
Molecular crowding influences DNA mechanics and DNA - protein interactions and is ubiquitous in living cells. Quantifying the effects of molecular crowding on DNA supercoiling is essential to relating experiments to DNA supercoiling. We use single molecule magnetic tweezers to study DNA supercoiling in the presence of dehydrating or crowding co-solutes. To study DNA supercoiling, we apply a stretching force of 0.8 pN to the DNA and then rotate one end of the DNA to induce supercoiling. In a 200 mM NaCl buffer without co-solutes, negatively supercoiled DNA absorbs some of the tortional stress by forming locally melted DNA regions. The base-pairs in these locally melted regions are believed to adopt a configuration where nucleotide base pairing is disrupted. We find that the presence of a dehydrating co-solute like glycerol further destabilizes base-pairs in negatively supercoiled DNA. The presence of polyethylene glycol, commonly used as a crowding agent, suppresses local strand separation and results in plectoneme formation even when DNA is negatively supercoiled. The results presented in this letter suggest further directions for studies of DNA supercoiling and supercoiled DNA - protein interactions in molecular conditions that approximate molecular composition.
分子拥挤影响DNA力学以及DNA与蛋白质的相互作用,且在活细胞中普遍存在。量化分子拥挤对DNA超螺旋的影响对于将实验与DNA超螺旋联系起来至关重要。我们使用单分子磁镊来研究在脱水或拥挤共溶质存在下的DNA超螺旋。为了研究DNA超螺旋,我们对DNA施加0.8皮牛的拉伸力,然后旋转DNA的一端以诱导超螺旋。在没有共溶质的200 mM NaCl缓冲液中,负超螺旋DNA通过形成局部解链的DNA区域吸收一些扭转应力。这些局部解链区域中的碱基对被认为采用了核苷酸碱基配对被破坏的构象。我们发现像甘油这样的脱水共溶质的存在会进一步破坏负超螺旋DNA中的碱基对稳定性。常用作拥挤剂的聚乙二醇的存在会抑制局部链分离,甚至在DNA为负超螺旋时也会导致超螺旋结构的形成。这封信中呈现的结果为在近似分子组成的分子条件下研究DNA超螺旋以及超螺旋DNA与蛋白质的相互作用提供了进一步的方向。