首页> 外文期刊>The Journal of Biochemistry >Protruding masticatory (superfast) myosin heads from staggered thick filaments of dog jaw muscle revealed by X-ray diffraction.
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Protruding masticatory (superfast) myosin heads from staggered thick filaments of dog jaw muscle revealed by X-ray diffraction.

机译:X射线衍射显示,犬颚肌交错的粗细丝伸出咀嚼(超快)肌球蛋白头部。

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摘要

To characterize the structure of jaw muscle fibres expressing masticatory (superfast) myosin, X-ray diffraction patterns of glycerinated fibres of dog masseter were compared with those of dog tibialis anterior in the relaxed state. Meridional reflections of masseter fibres were laterally broad, indicating that myosin filaments are staggered along the filament axis. Compared with tibialis anterior fibres, the peak of the first myosin layer line of masseter fibres was lower in intensity and shifted towards the meridian, while lattice spacings were larger at a similar sarcomere length. These suggest that the myosin heads of masticatory fibres are mobile, and tend to protrude from the filament shaft towards actin filaments. Lowering temperature or treating with N-phenylmaleimide shifted the peak of the first myosin layer line of tibialis anterior fibres towards the meridian and the resulting profile resembled that of masseter fibres. This suggests that the protruding mobile heads in the non-treated masticatory fibres are in the ATP-bound state. The increased population of weakly binding cross-bridges may contribute towards the high specific force of masticatory fibres during contraction. Electron micrographs confirmed the staggered alignment of thick filaments along the filament axis within sarcomeres of masticatory fibres, a feature that may confer efficient force development over a wide range of the sarcomere lengths.
机译:为了表征表达咀嚼型(超快)肌球蛋白的下颌肌纤维的结构,比较了在咬合状态下狗咬肌与胫前肌的甘油纤维的X射线衍射图。咬肌的子午线反射横向较宽,表明肌球蛋白丝沿丝轴交错。与胫骨前纤维相比,咬肌纤维的第一肌球蛋白层线的峰强度较低,并向子午线移动,而在相似的肌节长度处,晶格间距较大。这些表明咀嚼纤维的肌球蛋白头是可移动的,并且倾向于从细丝轴向肌动蛋白细丝突出。降低温度或用N-苯基马来酰亚胺处理将胫骨前纤维的第一肌球蛋白层线的峰移向子午线,所得轮廓类似于咬肌纤维。这表明未处理的咀嚼纤维中突出的活动头处于ATP结合状态。弱结合的跨桥的增加可能有助于收缩过程中咀嚼纤维的高比力。电子显微照片证实,在咀嚼纤维的肉瘤内,粗细丝沿着细丝轴交错排列,此特征可赋予在广泛的肌节长度上有效的力发展。

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