首页> 外文期刊>Biochemical and Biophysical Research Communications >Electron microscopic evidence for the myosin head lever arm mechanism in hydrated myosin filaments using the gas environmental chamber.
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Electron microscopic evidence for the myosin head lever arm mechanism in hydrated myosin filaments using the gas environmental chamber.

机译:使用气体环境室对水合肌球蛋白丝中肌球蛋白头杠杆臂机制的电子显微镜证据。

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摘要

Muscle contraction results from an attachment-detachment cycle between the myosin heads extending from myosin filaments and the sites on actin filaments. The myosin head first attaches to actin together with the products of ATP hydrolysis, performs a power stroke associated with release of hydrolysis products, and detaches from actin upon binding with new ATP. The detached myosin head then hydrolyses ATP, and performs a recovery stroke to restore its initial position. The strokes have been suggested to result from rotation of the lever arm domain around the converter domain, while the catalytic domain remains rigid. To ascertain the validity of the lever arm hypothesis in muscle, we recorded ATP-induced movement at different regions within individual myosin heads in hydrated myosin filaments, using the gas environmental chamber attached to the electron microscope. The myosin head were position-marked with gold particles using three different site-directed antibodies. The amplitude of ATP-induced movement at the actin binding site in the catalytic domain was similar to that at the boundary between the catalytic and converter domains, but was definitely larger than that at the regulatory light chain in the lever arm domain. These results are consistent with the myosin head lever arm mechanism in muscle contraction if some assumptions are made.
机译:肌肉收缩是由从肌球蛋白丝延伸的肌球蛋白头与肌动蛋白丝上的位点之间的附着-分离循环导致的。肌球蛋白头首先与ATP水解产物一起附着在肌动蛋白上,进行与水解产物释放相关的中风,并在与新的ATP结合后脱离肌动蛋白。然后分离的肌球蛋白头部水解ATP,并执行恢复冲程以恢复其初始位置。已经提出冲程是由于杠杆臂区域围绕转化器区域旋转而引起的,而催化区域保持刚性。为了确定杠杆臂假说在肌肉中的有效性,我们使用连接到电子显微镜的气体环境室记录了水合肌球蛋白丝中各个肌球蛋白头内不同区域的ATP诱导的运动。使用三种不同的定点抗体,将肌球蛋白头部标记有金颗粒。 ATP诱导的肌动蛋白结合位点在催化域中的运动幅度与催化域和转化域之间的边界相似,但绝对大于杠杆臂域中调节性轻链的幅度。如果做出一些假设,这些结果与肌球蛋白头部杠杆臂在肌肉收缩中的机制是一致的。

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