首页> 美国卫生研究院文献>Biophysical Journal >Backward movements of cross-bridges by application of stretch and by binding of MgADP to skeletal muscle fibers in the rigor state as studied by x-ray diffraction.
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Backward movements of cross-bridges by application of stretch and by binding of MgADP to skeletal muscle fibers in the rigor state as studied by x-ray diffraction.

机译:通过施加拉伸以及通过将MgADP结合到处于严格状态的骨骼肌纤维上来进行跨桥的向后运动这是通过X射线衍射研究的。

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摘要

The effects of the applied stretch and MgADP binding on the structure of the actomyosin cross-bridges in rabbit and/or frog skeletal muscle fibers in the rigor state have been investigated with improved resolution by x-ray diffraction using synchrotron radiation. The results showed a remarkable structural similarity between cross-bridge states induced by stretch and MgADP binding. The intensities of the 14.4- and 7.2-nm meridional reflections increased by approximately 23 and 47%, respectively, when 1 mM MgADP was added to the rigor rabbit muscle fibers in the presence of ATP-depletion backup system and an inhibitor for muscle adenylate kinase or by approximately 33 and 17%, respectively, when rigor frog muscle was stretched by approximately 4.5% of the initial muscle length. In addition, both MgADP binding and stretch induced a small but genuine intensity decrease in the region close to the meridian of the 5.9-nm layer line while retaining the intensity profile of its outer portion. No appreciable influence was observed in the intensities of the higher order meridional reflections of the 14.4-nm repeat and the other actin-based reflections as well as the equatorial reflections, indicating a lack of detachment of cross-bridges in both cases. The changes in the axial spacings of the actin-based and the 14.4-nm-based reflections were observed and associated with the tension change. These results indicate that stretch and ADP binding mediate similar structural changes, being in the correct direction to those expected for that the conformational changes are induced in the outer portion distant from the catalytic domain of attached cross-bridges. Modeling of conformational changes of the attached myosin head suggested a small but significant movement (about 10-20 degrees) in the light chain-binding domain of the head toward the M-line of the sarcomere. Both chemical (ADP binding) and mechanical (stretch) intervensions can reverse the contractile cycle by causing a backward movement of this domain of attached myosin heads in the rigor state.
机译:通过使用同步加速器辐射的X射线衍射,已研究了施加的拉伸和MgADP结合对兔和/或青蛙骨骼肌纤维在严格条件下的肌动球蛋白跨桥结构的影响,并提高了分辨率。结果表明,拉伸和MgADP结合诱导的跨桥状态之间具有显着的结构相似性。当在存在ATP耗竭备用系统和肌肉腺苷酸激酶抑制剂的情况下,将1 mM MgADP添加到严格的兔肌纤维中时,14.4和7.2 nm子午线反射的强度分别增加了约23%和47%。或将青蛙蛙肌肉拉伸到初始肌肉长度的约4.5%时,分别增加约33%和17%。此外,MgADP的结合和拉伸都在接近5.9 nm层线子午线的区域中引起了少量但真正的强度下降,同时保留了其外部的强度分布。在14.4 nm重复的高次子午反射强度和其他基于肌动蛋白的反射以及赤道反射的强度中均未观察到明显的影响,表明在两种情况下都缺乏跨桥的分离。观察到基于肌动蛋白的反射和基于14.4nm的反射的轴向间距的变化,并与张力变化相关。这些结果表明,拉伸和ADP结合介导了相似的结构变化,其方向与预期的构型变化方向相同,因为构型变化是在远离连接的跨桥的催化结构域的外部诱导的。附着的肌球蛋白头部构象变化的模型表明,头部的轻链结合域向肌小节的M线移动很小但很明显(约10-20度)。化学(ADP结合)和机械(拉伸)干预均可通过使附着的肌球蛋白头部的此域在严格状态下向后移动来逆转收缩周期。

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