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单根蛙肌纤维等长收缩和快速缩短过程中肌球蛋白头部构象的变化。

Changes in conformation of myosin heads during the development of isometric contraction and rapid shortening in single frog muscle fibres.

作者信息

Piazzesi G, Reconditi M, Dobbie I, Linari M, Boesecke P, Diat O, Irving M, Lombardi V

机构信息

Dipartimento di Scienze Fisiologiche, Università degli Studi di Firenze, I-50134 Firenze, Italy.

出版信息

J Physiol. 1999 Jan 15;514 ( Pt 2)(Pt 2):305-12. doi: 10.1111/j.1469-7793.1999.305ae.x.

Abstract
  1. Two-dimensional X-ray diffraction patterns were recorded at the European Synchrotron Radiation Facility from central segments of intact single muscle fibres of Rana temporaria with 5 ms time resolution during the development of isometric contraction. Shortening at ca 0.8 times the maximum velocity was also imposed at the isometric tetanus plateau. 2. The first myosin-based layer line (ML1) and the second myosin-based meridional reflection (M2), which are both strong in resting muscle, were completely abolished at the plateau of the isometric tetanus. The third myosin-based meridional reflection (M3), arising from the axial repeat of the myosin heads along the filaments, remained intense but its spacing changed from 14.34 to 14.56 nm. The intensity change of the M3 reflection, IM3, could be explained as the sum of two components, I14.34 and I14.56, arising from myosin head conformations characteristic of rest and isometric contraction, respectively. 3. The amplitudes (A) of the X-ray reflections, which are proportional to the fraction of myosin heads in each conformation, changed with half-times that were similar to that of isometric force development, which was 33.5 +/- 2. 0 ms (mean +/- s.d., 224 tetani from three fibres, 4 C), measured from the end of the latent period. We conclude that the myosin head conformation changes synchronously with force development, at least within the 5 ms time resolution of these measurements. 4. The changes in the X-ray reflections during rapid shortening have two temporal components. The rapid decrease in intensity of the 14.56 nm reflection at the start of shortening is likely to be due to tilting of myosin heads attached to actin. The slower changes in the other reflections were consistent with a return to the resting conformation of the myosin heads that was about 60 % complete after shortening of 70 nm per half-sarcomere.
摘要
  1. 在欧洲同步辐射装置上,以5毫秒的时间分辨率记录了欧洲林蛙完整单肌纤维中央段在等长收缩发展过程中的二维X射线衍射图样。在等长强直收缩平台期还施加了约最大速度0.8倍的缩短。2. 在静息肌肉中均很强的第一条基于肌球蛋白的层线(ML1)和第二条基于肌球蛋白的子午线反射(M2),在等长强直收缩平台期完全消失。第三条基于肌球蛋白的子午线反射(M3),由肌球蛋白头部沿细丝的轴向重复产生,仍然很强,但其间距从14.34纳米变为14.56纳米。M3反射强度的变化IM3,可以解释为分别来自静息和等长收缩特征性肌球蛋白头部构象的两个成分I14.34和I14.56之和。3. X射线反射的振幅(A)与每种构象中肌球蛋白头部的比例成正比,其变化的半衰期与等长力发展的半衰期相似,等长力发展的半衰期为33.5±2.0毫秒(平均值±标准差,来自三根纤维的224次强直收缩,4℃),从潜伏期结束开始测量。我们得出结论,至少在这些测量的5毫秒时间分辨率内,肌球蛋白头部构象与力发展同步变化。4. 在快速缩短过程中X射线反射的变化有两个时间成分。缩短开始时14.56纳米反射强度的快速下降可能是由于附着在肌动蛋白上的肌球蛋白头部倾斜。其他反射的较慢变化与肌球蛋白头部恢复到静息构象一致,在每半个肌节缩短70纳米后,这种恢复约完成60%。

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