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Twirling of Actin by Myosins II and V Observed via Polarized TIRF in a Modified Gliding Assay

机译:肌动蛋白II和V的肌动蛋白旋转通过改进的滑动实验中极化TIRF观察到。

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摘要

The force generated between actin and myosin acts predominantly along the direction of the actin filament, resulting in relative sliding of the thick and thin filaments in muscle or transport of myosin cargos along actin tracks. Previous studies have also detected lateral forces or torques that are generated between actin and myosin, but the origin and biological role of these sideways forces is not known. Here we adapt an actin gliding filament assay to measure the rotation of an actin filament about its axis (“twirling”) as it is translocated by myosin. We quantify the rotation by determining the orientation of sparsely incorporated rhodamine-labeled actin monomers, using polarized total internal reflection microscopy. To determine the handedness of the filament rotation, linear incident polarizations in between the standard s- and p-polarizations were generated, decreasing the ambiguity of our probe orientation measurement fourfold. We found that whole myosin II and myosin V both twirl actin with a relatively long (∼1 μm), left-handed pitch that is insensitive to myosin concentration, filament length, and filament velocity.
机译:肌动蛋白和肌球蛋白之间产生的力主要沿肌动蛋白丝的方向作用,从而导致粗细丝在肌肉中相对滑动或肌动蛋白沿肌动蛋白轨道的运输。先前的研究还检测到了肌动蛋白和肌球蛋白之间产生的侧向力或扭矩,但是这些侧向力的起源和生物学作用尚不清楚。在这里,我们采用肌动蛋白滑动丝测定法来测量肌动蛋白丝被肌球蛋白移位后绕其轴的旋转(“旋转”)。我们使用偏光全内反射显微镜通过确定稀疏掺入若丹明标记的肌动蛋白单体的方向来量化旋转。为了确定灯丝旋转的顺手性,生成了标准s极化和p极化之间的线性入射极化,从而将探头方向测量的不确定性降低了四倍。我们发现,整个肌球蛋白II和肌球蛋白V都以相对较长(〜1​​μm)的左旋螺距旋转肌动蛋白,对肌球蛋白浓度,细丝长度和细丝速度不敏感。

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