Institute for Physical Science and Technology, University of Maryland, College Park, Maryland 20742, USA.
Maryland Biophysics Program, University of Maryland, College Park, Maryland 20742, USA.
Phys Rev Lett. 2020 Jun 5;124(22):228101. doi: 10.1103/PhysRevLett.124.228101.
In situ measurements of the free energy difference between the open and closed states of ion channels are challenging due to hysteresis effects and inactivation. Exploiting recent developments in statistical physics, we present a general formalism to extract the free energy difference ΔF between the closed and open states of mechanosensitive ion channels from nonequilibrium work distributions associated with the opening and closing of the channels (gating) in response to ramp stimulation protocols recorded in native patches. We show that the work distributions obtained from the gating of MscS channels in E. coli membrane satisfy the strong symmetry relation predicted by the Crooks fluctuation theorem. Our approach enables the determination of ΔF using patch-clamp experiments, which are often inherently restricted to the nonequilibrium regime.
由于滞后效应和失活,对离子通道的开放和关闭状态之间的自由能差异进行原位测量具有挑战性。利用统计物理学的最新进展,我们提出了一种从与通道(门控)打开和关闭相关的非平衡功分布中提取机械敏感离子通道的关闭和开放状态之间的自由能差 ΔF 的一般形式,这些分布是针对记录在天然斑块中响应斜坡刺激方案的响应。我们表明,从大肠杆菌膜中 MscS 通道的门控获得的功分布满足 Crooks 涨落定理预测的强对称关系。我们的方法可以使用通常仅限于非平衡状态的膜片钳实验来确定 ΔF。