Institute for Physical Science and Technology, University of Maryland, College Park, MD 20742, USA.
Proc Natl Acad Sci U S A. 2013 Mar 19;110(12):4500-5. doi: 10.1073/pnas.1214051110. Epub 2013 Mar 4.
In single-molecule laser optical tweezer (LOT) pulling experiments, a protein or RNA is juxtaposed between DNA handles that are attached to beads in optical traps. The LOT generates folding trajectories under force in terms of time-dependent changes in the distance between the beads. How to construct the full intrinsic folding landscape (without the handles and beads) from the measured time series is a major unsolved problem. By using rigorous theoretical methods--which account for fluctuations of the DNA handles, rotation of the optical beads, variations in applied tension due to finite trap stiffness, as well as environmental noise and limited bandwidth of the apparatus--we provide a tractable method to derive intrinsic free-energy profiles. We validate the method by showing that the exactly calculable intrinsic free-energy profile for a generalized Rouse model, which mimics the two-state behavior in nucleic acid hairpins, can be accurately extracted from simulated time series in a LOT setup regardless of the stiffness of the handles. We next apply the approach to trajectories from coarse-grained LOT molecular simulations of a coiled-coil protein based on the GCN4 leucine zipper and obtain a free-energy landscape that is in quantitative agreement with simulations performed without the beads and handles. Finally, we extract the intrinsic free-energy landscape from experimental LOT measurements for the leucine zipper.
在单分子激光光镊(LOT)拉伸实验中,蛋白质或 RNA 被并列放置在连接到光阱中的珠子的 DNA 手柄之间。LOT 根据珠子之间距离随时间的变化产生力下的折叠轨迹。如何从测量的时间序列中构建完整的固有折叠景观(不包括手柄和珠子)是一个未解决的主要问题。通过使用严格的理论方法 - 考虑 DNA 手柄的波动、光学珠的旋转、由于有限的阱刚度导致的施加张力的变化,以及环境噪声和仪器的有限带宽 - 我们提供了一种可行的方法来推导出固有自由能曲线。我们通过证明对于模拟的 LOT 装置中的广义 Rouse 模型,可以从模拟时间序列中准确提取可精确计算的固有自由能曲线,而与手柄的刚度无关,从而验证了该方法。接下来,我们将该方法应用于基于 GCN4 亮氨酸拉链的卷曲螺旋蛋白的粗粒 LOT 分子模拟轨迹,并获得与不使用珠子和手柄进行的模拟定量一致的自由能景观。最后,我们从亮氨酸拉链的实验 LOT 测量中提取固有自由能景观。