Quinlan Margot E, Forkey Joseph N, Goldman Yale E
Pennsylvania Muscle Institute, University of Pennsylvania, Philadelphia, 19104-6083, USA.
Biophys J. 2005 Aug;89(2):1132-42. doi: 10.1529/biophysj.104.053496. Epub 2005 May 13.
To study the orientation and dynamics of myosin, we measured fluorescence polarization of single molecules and ensembles of myosin decorating actin filaments. Engineered chicken gizzard regulatory light chain (RLC), labeled with bisiodoacetamidorhodamine at cysteine residues 100 and 108 or 104 and 115, was exchanged for endogenous RLC in rabbit skeletal muscle HMM or S1. AEDANS-labeled actin, fully decorated with labeled myosin fragment or a ratio of approximately 1:1000 labeled:unlabeled myosin fragment, was adhered to a quartz slide. Eight polarized fluorescence intensities were combined with the actin orientation from the AEDANS fluorescence to determine the axial angle (relative to actin), the azimuthal angle (around actin), and RLC mobility on the <<10 ms timescale. Order parameters of the orientation distributions from heavily labeled filaments agree well with comparable measurements in muscle fibers, verifying the technique. Experiments with HMM provide sufficient angular resolution to detect two orientations corresponding to the two heads in rigor. Experiments with S1 show a single orientation intermediate to the two seen for HMM. The angles measured for HMM are consistent with heads bound on adjacent actin monomers of a filament, under strain, similar to predictions based on ensemble measurements made on muscle fibers with electron microscopy and spectroscopic experiments.
为了研究肌球蛋白的取向和动力学,我们测量了肌动蛋白丝上单个肌球蛋白分子及其聚集体的荧光偏振。用双碘乙酰胺罗丹明标记半胱氨酸残基100和108或104和115的工程化鸡胃调节轻链(RLC),替换兔骨骼肌重酶解肌球蛋白(HMM)或肌球蛋白亚片段1(S1)中的内源性RLC。用AEDANS标记的肌动蛋白,完全被标记的肌球蛋白片段或大约1:1000的标记:未标记肌球蛋白片段比例所修饰,粘附在石英载玻片上。八个偏振荧光强度与来自AEDANS荧光的肌动蛋白取向相结合,以确定轴角(相对于肌动蛋白)、方位角(围绕肌动蛋白)以及在<<10毫秒时间尺度上的RLC迁移率。来自高度标记细丝的取向分布的序参数与肌肉纤维中的可比测量结果非常吻合,验证了该技术。用HMM进行的实验提供了足够的角分辨率,以检测对应于僵直状态下两个头部的两种取向。用S1进行的实验显示出一种单一取向,介于HMM所见的两种取向之间。HMM测量的角度与在张力下结合在细丝相邻肌动蛋白单体上的头部一致,类似于基于用电子显微镜和光谱实验对肌肉纤维进行的整体测量所做的预测。