Department of Physics and Center for Theoretical Biological Physics, University of California at San Diego, La Jolla, California.
Biophys J. 2013 Nov 5;105(9):L19-22. doi: 10.1016/j.bpj.2013.09.023.
The ability of biomolecules to fold and to bind to other molecules is fundamental to virtually every living process. Advanced experimental techniques can now reveal how single biomolecules fold or bind against mechanical force, with the force serving as both the regulator and the probe of folding and binding transitions. Here, we present analytical expressions suitable for fitting the major experimental outputs from such experiments to enable their analysis and interpretation. The fit yields the key determinants of the folding and binding processes: the intrinsic on-rate and the location and height of the activation barrier.
生物分子的折叠和与其他分子结合的能力是几乎所有生命过程的基础。现在,先进的实验技术可以揭示单个生物分子在机械力作用下如何折叠或结合,力既是折叠和结合转变的调节剂,也是探针。在这里,我们提出了适合拟合这些实验的主要实验输出的分析表达式,以实现它们的分析和解释。拟合结果得出了折叠和结合过程的关键决定因素:固有进入速率以及激活势垒的位置和高度。