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兔腰大肌单根去皮纤维中附着横桥的状态依赖性径向弹性。

State-dependent radial elasticity of attached cross-bridges in single skinned fibres of rabbit psoas muscle.

作者信息

Xu S, Brenner B, Yu L C

机构信息

National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

J Physiol. 1993 Feb;461:283-99. doi: 10.1113/jphysiol.1993.sp019514.

Abstract
  1. In a single skinned fibre of rabbit psoas muscle, upon attachment of cross-bridges to actin in the presence of ADP or pyrophosphate (PP(i)), the separation between the contractile filaments, as determined by equatorial X-ray diffraction, is found to decrease, suggesting that force is generated in the radial direction.2. The single muscle fibres were subjected to compression by 0-8% of dextran T(500). The changes in lattice spacings by dextran compression were compared with changes induced by cross-bridge attachment to actin. Based on this comparison, the magnitude and the direction of the radial force generated by the attached cross-bridges were estimated. The radial cross-bridge force varied with filament separation, and the magnitude of the radial cross-bridge force reached as high as the maximal axial force produced during isometric contraction.3. One key parameter of the radial elasticity, i.e. the equilibrium spacing where the radial force is zero, was found to depend on the ligand bound to the myosin head. In the presence of ADP, the equilibrium spacing was 36 nm. In the presence of MgPP(i) the equilibrium spacing shifted to 35 nm and Ca(2+) had little effect on the equilibrium spacing.4. The equilibrium spacing was independent of the fraction of cross-bridges attached to actin. The fraction of cross-bridges attached in rigor was modulated from 100% to close to 0% by adding up to 10 mM of ATPgammaS in the rigor solution. The lattice spacing remained at 38 nm, the equilibrium spacing for nucleotide-free cross-bridges at mu = 170 mM.5. Radial force generated by cross-bridges in rigor at large lattice spacings (38 nm </= d(10) </= 46 nm) appeared to vary linearly with lattice spacing.6. The titration of ATPgammaS to fibres in rigor provided a correlation between the radial stiffness of the nucleotide-free cross-bridges and the equatorial intensities. The relation between the equatorial intensity ratio I(11)/I(10) and radial stiffness appeared to be approximately linear.7. The fibres under different conditions showed a wide range of radial stiffness, which was not proportional to the apparent axial stiffness of the fibre. If the apparent axial stiffness is a measure of the fraction of cross-bridges bound to actin, it follows that the radial elastic constant is state dependent; or vice versa.8. Differences in equilibrium lattice spacing and in radial elastic constant, most probably reflect differences in the molecular structure of the acto-myosin complex and there is more than one single conformation of the various strongly bound cross-bridge states.9. Determining equilibrium spacings of the radial elasticity appears to be an effective new approach in detecting structural differences among the attached cross-bridges, since this approach is independent of the fraction of cross-bridges attached, a factor that frequently encumbers the interpretation of structural studies of attached cross-bridge states.
摘要
  1. 在兔腰大肌的单根剥制肌纤维中,当在二磷酸腺苷(ADP)或焦磷酸(PP(i))存在的情况下横桥附着于肌动蛋白时,通过赤道X射线衍射测定发现收缩丝之间的间距减小,这表明在径向方向上产生了力。

  2. 单根肌纤维受到0 - 8%葡聚糖T(500)的压缩。将葡聚糖压缩引起的晶格间距变化与横桥附着于肌动蛋白引起的变化进行比较。基于这种比较,估算了附着横桥产生的径向力的大小和方向。径向横桥力随丝间距变化,径向横桥力的大小高达等长收缩期间产生的最大轴向力。

  3. 发现径向弹性的一个关键参数,即径向力为零时的平衡间距,取决于结合在肌球蛋白头部的配体。在ADP存在的情况下,平衡间距为36纳米。在MgPP(i)存在的情况下,平衡间距变为35纳米,而Ca(2+)对平衡间距影响很小。

  4. 平衡间距与附着于肌动蛋白的横桥比例无关。在僵直溶液中加入高达10 mM的ATPγS可将处于僵直状态时附着的横桥比例从100%调节至接近0%。晶格间距保持在核苷酸无结合横桥在μ = 170 mM时的平衡间距38纳米。

  5. 在大晶格间距(38纳米≤d(10)≤46纳米)下处于僵直状态的横桥产生的径向力似乎随晶格间距呈线性变化。

  6. 向处于僵直状态的纤维中滴定ATPγS提供了核苷酸无结合横桥的径向刚度与赤道强度之间的相关性。赤道强度比I(11)/I(10)与径向刚度之间的关系似乎近似线性。

  7. 不同条件下的纤维表现出广泛的径向刚度范围,这与纤维的表观轴向刚度不成比例。如果表观轴向刚度是结合于肌动蛋白的横桥比例的一种度量,那么径向弹性常数是状态依赖的;反之亦然。

  8. 平衡晶格间距和径向弹性常数的差异很可能反映了肌动球蛋白复合物分子结构的差异,并且各种紧密结合的横桥状态存在不止一种单一构象。

  9. 确定径向弹性的平衡间距似乎是检测附着横桥之间结构差异的一种有效的新方法,因为这种方法与附着横桥的比例无关,而附着横桥比例这一因素常常妨碍对附着横桥状态结构研究的解释。

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Radial forces within muscle fibers in rigor.处于尸僵状态的肌纤维内的径向力。
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