Bernheim-Groswasser Anne, Shusterman Roman, Krichevsky Oleg
Chemical Engineering Department, Ben-Gurion University, Beer-Sheva 84105, Israel.
J Chem Phys. 2006 Aug 28;125(8):084903. doi: 10.1063/1.2244550.
We adapt fluorescence correlation spectroscopy (FCS) formalism to the studies of the dynamics of semiflexible polymers and derive expressions relating FCS correlation function to the longitudinal and transverse mean-square displacements of polymer segments. The obtained relations do not depend on any specific model of polymer dynamics. We use the derived expressions to measure the dynamics of actin filaments in two experimental situations: filaments labeled at distinct positions and homogeneously labeled filaments. Both approaches give consistent results and allow to measure the temporal dependence of the segmental mean-square displacement over almost five decades in time, from approximately 40 micros to approximately 2 s. These noninvasive measurements allow for a detailed quantitative comparison of the experimental data to the current theories of semiflexible polymer dynamics. Good quantitative agreement is found between the experimental results and theories explicitly accounting for the hydrodynamic interactions between polymer segments.
我们将荧光相关光谱(FCS)形式主义应用于半柔性聚合物动力学的研究,并推导了将FCS相关函数与聚合物链段的纵向和横向均方位移相关联的表达式。所得到的关系不依赖于任何特定的聚合物动力学模型。我们使用推导的表达式在两种实验情况下测量肌动蛋白丝的动力学:在不同位置标记的丝和均匀标记的丝。这两种方法给出了一致的结果,并能够在近五个数量级的时间范围内测量链段均方位移的时间依赖性,时间范围从大约40微秒到大约2秒。这些非侵入性测量允许将实验数据与当前的半柔性聚合物动力学理论进行详细的定量比较。在实验结果与明确考虑聚合物链段之间流体动力学相互作用的理论之间发现了良好的定量一致性。