Cossio Pilar, Hummer Gerhard, Szabo Attila
Department of Theoretical Biophysics, Max Planck Institute of Biophysics, 60438 Frankfurt am Main, Germany;
Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD 20892-0520
Proc Natl Acad Sci U S A. 2015 Nov 17;112(46):14248-53. doi: 10.1073/pnas.1519633112. Epub 2015 Nov 4.
In typical force spectroscopy experiments, a small biomolecule is attached to a soft polymer linker that is pulled with a relatively large bead or cantilever. At constant force, the total extension stochastically changes between two (or more) values, indicating that the biomolecule undergoes transitions between two (or several) conformational states. In this paper, we consider the influence of the dynamics of the linker and mesoscopic pulling device on the force-dependent rate of the conformational transition extracted from the time dependence of the total extension, and the distribution of rupture forces in force-clamp and force-ramp experiments, respectively. For these different experiments, we derive analytic expressions for the observables that account for the mechanical response and dynamics of the pulling device and linker. Possible artifacts arise when the characteristic times of the pulling device and linker become comparable to, or slower than, the lifetimes of the metastable conformational states, and when the highly anharmonic regime of stretched linkers is probed at high forces. We also revisit the problem of relating force-clamp and force-ramp experiments, and identify a linker and loading rate-dependent correction to the rates extracted from the latter. The theory provides a framework for both the design and the quantitative analysis of force spectroscopy experiments by highlighting, and correcting for, factors that complicate their interpretation.
在典型的力谱实验中,一个小生物分子附着在一个软聚合物连接体上,该连接体由一个相对较大的珠子或悬臂拉动。在恒定力作用下,总伸长量在两个(或更多)值之间随机变化,这表明生物分子在两个(或几个)构象状态之间发生转变。在本文中,我们分别考虑了连接体和介观拉动装置的动力学对从总伸长量的时间依赖性中提取的构象转变的力依赖速率,以及在力钳和力斜坡实验中破裂力分布的影响。对于这些不同的实验,我们推导了可观测值的解析表达式,这些表达式考虑了拉动装置和连接体的力学响应和动力学。当拉动装置和连接体的特征时间变得与亚稳构象状态的寿命相当或比其更慢时,以及当在高力下探测拉伸连接体的高度非谐区域时,可能会出现伪像。我们还重新审视了力钳和力斜坡实验之间的关联问题,并确定了对从后者提取的速率的连接体和加载速率依赖性校正。该理论通过突出并校正使力谱实验解释复杂化的因素,为其设计和定量分析提供了一个框架。