Selvin P R, Cook D N, Pon N G, Bauer W R, Klein M P, Hearst J E
Department of Physics, University of California, Berkeley.
Science. 1992 Jan 3;255(5040):82-5. doi: 10.1126/science.1553534.
Time-correlated single-photon counting of intercalated ethidium bromide was used to measure the torsion constants of positively supercoiled, relaxed, and negatively supercoiled pBR322 DNA, which range in superhelix density from +0.042 to -0.123. DNA behaves as coupled, nonlinear torsional pendulums under superhelical stress, and the anharmonic term in the Hamiltonian is approximately 15 percent for root-mean-square fluctuations in twist at room temperature. At the level of secondary structure, positively supercoiled DNA is significantly more flexible than negatively supercoiled DNA. These results exclude certain models that account for differential binding affinity of proteins to positively and negatively supercoiled DNA.
采用与时间相关的插入溴化乙锭单光子计数法来测量超螺旋密度范围为+0.042至-0.123的正超螺旋、松弛和负超螺旋pBR322 DNA的扭转常数。在超螺旋应力下,DNA表现为耦合的非线性扭转摆,在室温下,哈密顿量中的非谐项对于扭转的均方根波动约为15%。在二级结构水平上,正超螺旋DNA比负超螺旋DNA明显更具柔韧性。这些结果排除了某些解释蛋白质对正超螺旋和负超螺旋DNA具有不同结合亲和力的模型。