Lipman Everett A, Schuler Benjamin, Bakajin Olgica, Eaton William A
Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Diseases, Building 5, Room 104, National Institutes of Health, Bethesda, MD 20892-0520, USA.
Science. 2003 Aug 29;301(5637):1233-5. doi: 10.1126/science.1085399.
In order to investigate the behavior of single molecules under conditions far from equilibrium, we have coupled a microfabricated laminar-flow mixer to a confocal optical system. This combination enables time-resolved measurement of Förster resonance energy transfer after an abrupt change in solution conditions. Observations of a small protein show the evolution of the intramolecular distance distribution as folding progresses. This technique can expose subpopulations, such as unfolded protein under conditions favoring the native structure, that would be obscured in equilibrium experiments.
为了研究远离平衡条件下单分子的行为,我们将一个微加工层流混合器与共焦光学系统耦合。这种组合能够在溶液条件突然变化后对Förster共振能量转移进行时间分辨测量。对一种小蛋白质的观察显示了随着折叠过程分子内距离分布的演变。这项技术可以揭示一些亚群,比如在有利于天然结构的条件下未折叠的蛋白质,而这些在平衡实验中会被掩盖。