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对单个青蛙肌肉纤维拉伸增强现象的机械与X射线衍射联合研究。

A combined mechanical and X-ray diffraction study of stretch potentiation in single frog muscle fibres.

作者信息

Linari M, Lucii L, Reconditi M, Casoni M E, Amenitsch H, Bernstorff S, Piazzesi G, Lombardi V

机构信息

Università di Firenze, 50134 Firenze, Italy, Austrian Academy of Sciences, 8010 Graz, Austria and Sincrotrone Trieste, 34012 Basovizza, Trieste, Italy.

出版信息

J Physiol. 2000 Aug 1;526 Pt 3(Pt 3):589-96. doi: 10.1111/j.1469-7793.2000.00589.x.

Abstract

The nature of the force (T) response during and after steady lengthening has been investigated in tetanized single muscle fibres from Rana temporaria (4 C; 2.15 micrometer sarcomere length) by determining both the intensity of the third order myosin meridional X-ray reflection (IM3) and the stiffness (e) of a selected population of sarcomeres within the fibre. With respect to the value at the isometric tetanus plateau (To), IM3 was depressed to 0.67 +/- 0.04 during steady lengthening at approximately 160 nm s(-1) (T approximately 1.7) and recovered to 0.86 +/- 0.05 during the 250 ms period of after-stretch potentiation following the rapid decay of force at the end of lengthening (T approximately 1.3); under the same conditions stiffness increased to 1.25 +/- 0.02 and to 1.12 +/- 0.03, respectively. After subtraction of the contribution of myofilaments to the half-sarcomere compliance, stiffness measurements indicated that (1) during lengthening the cross-bridge number rises to 1.8 times the original isometric value and the average degree of cross-bridge strain is similar to that induced by the force-generating process in isometric conditions (2.3 nm), and (2) after-stretch potentiation is explained by a residual larger cross-bridge number. Structural data are compatible with mechanical data if the axial dispersion of attached heads is doubled during steady lengthening and recovers half-way towards the original isometric value during after-stretch potentiation.

摘要

通过测定第三级肌球蛋白子午X射线反射强度(IM3)以及纤维内选定肌节群体的刚度(e),研究了在稳定拉伸期间及之后,来自林蛙(4℃;肌节长度2.15微米)的强直单根肌纤维中力(T)响应的性质。相对于等长强直平台期的值(T0),在以约160nm s⁻¹的速度稳定拉伸期间(T约为1.7),IM3降至0.67±0.04,在拉伸结束时力快速衰减后的250ms后拉伸增强期内恢复至0.86±0.05(T约为1.3);在相同条件下,刚度分别增加至1.25±0.02和1.12±0.03。在减去肌丝对半肌节顺应性的贡献后,刚度测量表明:(1)在拉伸过程中,横桥数量增加至初始等长值的1.8倍,且横桥应变的平均程度与等长条件下力产生过程所诱导的相似(2.3nm);(2)后拉伸增强可由残余的较大横桥数量来解释。如果在稳定拉伸期间附着头部的轴向分散加倍,且在后拉伸增强期间恢复至初始等长值的一半,则结构数据与力学数据相符。

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