Tsuchiya T, Tanaka H, Shirakawa I, Karr T, Sugi H
Department of Biology, Faculty of Science, Kobe University, Nada-ku, Kobe, 657-0013, Japan.
Jpn J Physiol. 1998 Oct;48(5):383-7. doi: 10.2170/jjphysiol.48.383.
The role of myosin subfragment-2 (myosin S-2) in muscle contraction was studied by using an in vitro motility assay system in which the ATP-dependent sliding between myosin-coated polystyrene beads and actin filament arrays (actin cables) of giant algal cells were recorded under constant external loads provided with a centrifuge microscope. With antibody to myosin S-2 below 0.3 mg/ml, the maximum "isometric" force generated by myosin molecules on the bead decreased markedly, but the unloaded bead-sliding velocity along actin cables did not change appreciably, indicating a decrease in the number of myosin molecules interacting with actin cables. The antibody at 0.3-1.5 mg/ml decreased not only the maximum isometric force, but also the unloaded bead-sliding velocity in a dose-dependent manner. With the antibody at 1.5-3 mg/ml, the beads eventually stopped moving to remain attached to actin cables. These beads could be readily detached from actin cables with very small centrifugal forces, indicating very weak actin-myosin linkages. The antibody had no effect on rigor actin-myosin linkages formed before the antibody application. These results are consistent with the view that myosin S-2 plays an essential role in muscle contraction.
利用体外运动分析系统研究了肌球蛋白亚片段2(肌球蛋白S-2)在肌肉收缩中的作用。在配备有离心显微镜的恒定外部负荷下,记录了肌球蛋白包被的聚苯乙烯珠与大型藻类细胞的肌动蛋白丝阵列(肌动蛋白束)之间的ATP依赖性滑动。当肌球蛋白S-2抗体浓度低于0.3 mg/ml时,肌球蛋白分子在珠子上产生的最大“等长”力显著降低,但珠子沿肌动蛋白束的无负荷滑动速度没有明显变化,这表明与肌动蛋白束相互作用的肌球蛋白分子数量减少。浓度为0.3 - 1.5 mg/ml的抗体不仅降低了最大等长力,还以剂量依赖的方式降低了无负荷珠子的滑动速度。当抗体浓度为1.5 - 3 mg/ml时,珠子最终停止移动并附着在肌动蛋白束上。这些珠子可以用非常小的离心力很容易地从肌动蛋白束上分离下来,表明肌动蛋白 - 肌球蛋白连接非常弱。该抗体对施加抗体之前形成的强直肌动蛋白 - 肌球蛋白连接没有影响。这些结果与肌球蛋白S-2在肌肉收缩中起重要作用的观点一致。