Cluzel P, Lebrun A, Heller C, Lavery R, Viovy J L, Chatenay D, Caron F
Institut Curie URA Centre National de la Recherche Scientifique (CNRS), Paris, France.
Science. 1996 Feb 9;271(5250):792-4. doi: 10.1126/science.271.5250.792.
The force-displacement response of a single duplex DNA molecule was measured. The force saturates at a plateau around 70 piconewtons, which ends when the DNA has been stretched about 1.7 times its contour length. This behavior reveals a highly cooperative transition to a state here termed S-DNA. Addition of an intercalator suppresses this transition. Molecular modeling of the process also yields a force plateau and suggests a structure for the extended form. These results may shed light on biological processes involving DNA extension and open the route for mechanical studies on individual molecules in a previously unexplored range.
测量了单个双链DNA分子的力-位移响应。力在约70皮牛顿的平台处达到饱和,当DNA被拉伸至其轮廓长度的约1.7倍时该平台结束。这种行为揭示了向一种此处称为S-DNA的状态的高度协同转变。嵌入剂的加入抑制了这种转变。该过程的分子模型也产生了一个力平台,并提出了伸展形式的结构。这些结果可能有助于阐明涉及DNA伸展的生物学过程,并为在以前未探索的范围内对单个分子进行力学研究开辟道路。