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大鼠去表皮心肌细胞和骨骼肌纤维中负载缩短的钙离子依赖性

Ca2+ dependence of loaded shortening in rat skinned cardiac myocytes and skeletal muscle fibres.

作者信息

McDonald K S

机构信息

Department of Physiology, University of Missouri School of Medicine, Columbia, MO 65212, USA.

出版信息

J Physiol. 2000 May 15;525 Pt 1(Pt 1):169-81. doi: 10.1111/j.1469-7793.2000.00169.x.

Abstract

This study examined the effects of activator Ca2+ on loaded shortening and power output in skinned rat cardiac myocyte preparations, and fast- and slow-twitch skeletal muscle fibres at 12 degrees C. Shortening velocities were slowed at nearly all relative loads when Ca2+ activation levels were reduced to approximately 70% maximal isometric force (P4.5) in cardiac myocyte preparations, as well as in fast-twitch and slow-twitch skeletal muscle fibres. Peak absolute power outputs declined significantly as Ca2+ activation levels were progressively reduced from maximal to 30% P4.5 in all three striated muscle types, with the greatest change in fast-twitch fibres. In cardiac myocyte preparations, even peak relative power output progressively fell when Ca2+ activation levels were lowered to approximately 70, 50 and 30% P4.5. Peak relative power output also progressively fell in fast-twitch fibres as Ca2+ activation levels were lowered from maximal down to 50% P4.5. However, in slow-twitch fibres, peak relative power output decreased only at 70% P4.5 and then remained unchanged with further reductions in Ca2+ activation levels. The greater Ca2+ dependence of peak relative power output in cardiac myocytes and fast-twitch fibres may arise from a shared mechanism such as cooperative inactivation of the thin filament, which is likely to be slowest in less cooperative slow-twitch fibres. During submaximal Ca2+ activations, the time course of shortening became markedly curvilinear during isotonic shortening in all three muscle types. The progressive slowdown in shortening velocity during isotonic contractions was greatest in fast-twitch fibres, consistent with the higher degree of cooperativity of Ca2+ activation in fast-twitch fibres. Additionally, fast-twitch and slow-twitch fibre stiffness decreased in concert with the curvature of length traces during loaded shortening. These results are consistent with the idea that cooperative inactivation of the thin filament occurs during loaded shortening and such a mechanism may contribute to the progressive slowing and overall Ca2+ dependence of loaded shortening velocity.

摘要

本研究检测了激活剂Ca2+对12℃下分离的大鼠心肌细胞制剂以及快、慢肌骨骼肌纤维的负荷缩短和功率输出的影响。当Ca2+激活水平降低至心肌细胞制剂以及快、慢肌骨骼肌纤维中最大等长力(P4.5)的约70%时,几乎在所有相对负荷下缩短速度均减慢。在所有三种横纹肌类型中,随着Ca2+激活水平从最大逐渐降低至30% P4.5,绝对功率峰值显著下降,其中快肌纤维变化最大。在心肌细胞制剂中,当Ca2+激活水平降至约70%、50%和30% P4.5时,即使相对功率峰值也逐渐下降。随着Ca2+激活水平从最大降至50% P4.5,快肌纤维的相对功率峰值也逐渐下降。然而,在慢肌纤维中,相对功率峰值仅在70% P4.5时下降,随后随着Ca2+激活水平的进一步降低保持不变。心肌细胞和快肌纤维中相对功率峰值对Ca2+的依赖性更强,可能源于共同的机制,如细肌丝的协同失活,而这种机制在协同性较低的慢肌纤维中可能最慢。在次最大Ca2+激活期间,所有三种肌肉类型在等张收缩期间缩短的时间进程在等张缩短期间变得明显呈曲线状。等张收缩期间缩短速度的逐渐减慢在快肌纤维中最大,这与快肌纤维中Ca2+激活的更高协同程度一致。此外,快肌和慢肌纤维的刚度随着负荷缩短期间长度轨迹的曲率而协同降低。这些结果与以下观点一致,即细肌丝的协同失活发生在负荷缩短期间,并且这种机制可能导致负荷缩短速度的逐渐减慢以及对Ca2+的总体依赖性。

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本文引用的文献

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Force-velocity relations in mammalian heart muscle.哺乳动物心肌中的力-速度关系。
Am J Physiol. 1962 May;202:931-9. doi: 10.1152/ajplegacy.1962.202.5.931.

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