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对活性单根青蛙肌纤维施加阶跃拉伸后横桥的解离与附着

Cross-bridge detachment and attachment following a step stretch imposed on active single frog muscle fibres.

作者信息

Piazzesi G, Linari M, Reconditi M, Vanzi F, Lombardi V

机构信息

Dipartimento di Scienze Fisiologiche, Università degli Studi di Firenze, Italy.

出版信息

J Physiol. 1997 Jan 1;498 ( Pt 1)(Pt 1):3-15. doi: 10.1113/jphysiol.1997.sp021837.

Abstract
  1. The time course of cross-bridge detachment-attachment following a step stretch was determined in single frog muscle fibres (at 4 degrees (1 and 2.1 microns sarcomere length) by imposing, under sarcomere length control by a striation follower, test step releases of various amplitudes (2-13 nm per half-sarcomere) at successive times (4-55 ms) after a conditioning stretch of approximately 4 nm per half-sarcomere. 2. The comparison with the control tension transients, elicited by releases not preceded by the conditioning stretch, shows that, early after the conditioning stretch, the quick tension recovery following small releases is depressed and the quick tension recovery following large releases is potentiated. Both effects are expected as a consequence of the strain produced in the cross-bridges by the conditioning stretch. 3. These effects disappear and the tension transient is reprimed, indicating substitution of freshly attached cross-bridges for strained cross-bridges, with a time constant of approximately 10 ms. 4. A novel multiple-exponential equation, based on the hypothesis of complete substitution of freshly attached cross-bridges for the cross-bridges that underwent the stretch, has been used to fit the whole tension transient following step stretches of different sizes (2-6 nm per half-sarcomere). For a stretch of 4 nm, the time constant of the exponential process responsible for cross-bridge detachment (tau d, 9.3 ms) almost coincides with the time constant of repriming as measured by the double-step experiments. The time constant of the exponential process representing the cumulative effects of attachment and force generation (tau 3) is 13.6 ms. 5. For stretches of different sizes the amount of quick tension recovery attributable to the reversal of the working stroke elicited by the stretches is estimated by subtracting, from the original tension transient, the contribution to tension recovery due to detachment-attachment of cross-bridges as estimated by the multiple-exponential analysis. Following this calculation, the structural change in the myosin heads responsible for the reversal of the working stroke can be 2 nm at maximum, suggesting that the elastic component in the cross-bridges is at least twice as rigid as previously thought.
摘要
  1. 通过在肌节长度跟踪器控制肌节长度的条件下,在单个青蛙肌肉纤维中(4℃,肌节长度为1和2.1微米),在大约每半个肌节4纳米的预拉伸后的连续时间(4 - 55毫秒)施加各种幅度(每半个肌节2 - 13纳米)的测试步长释放,确定了阶跃拉伸后横桥解离 - 附着的时间进程。2. 与未经过预拉伸的释放所引发的对照张力瞬变进行比较表明,在预拉伸后早期,小幅度释放后的快速张力恢复受到抑制,大幅度释放后的快速张力恢复得到增强。这两种效应都是预拉伸在横桥中产生应变的结果。3. 这些效应消失,张力瞬变被重新启动,表明新附着的横桥取代了应变的横桥,时间常数约为10毫秒。4. 基于新附着的横桥完全取代经历拉伸的横桥这一假设,一个新的多指数方程被用于拟合不同大小(每半个肌节2 - 6纳米)阶跃拉伸后的整个张力瞬变。对于4纳米的拉伸,负责横桥解离的指数过程的时间常数(τd,9.3毫秒)几乎与通过双步实验测量的重新启动时间常数一致。代表附着和力产生累积效应的指数过程的时间常数(τ3)为13.6毫秒。5. 对于不同大小的拉伸,通过从原始张力瞬变中减去多指数分析估计的横桥解离 - 附着对张力恢复的贡献,来估计由拉伸引发的工作行程逆转所导致的快速张力恢复量。经过此计算,负责工作行程逆转的肌球蛋白头部的结构变化最大可为2纳米,这表明横桥中的弹性成分的刚性至少是先前认为的两倍。

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