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肌纤维类型与功能。

Muscle fiber types and function.

作者信息

Talmadge R J, Roy R R, Edgerton V R

机构信息

Department of Physiological Science, UCLA 90024-1527.

出版信息

Curr Opin Rheumatol. 1993 Nov;5(6):695-705. doi: 10.1097/00002281-199305060-00002.

Abstract

In this review, we address current concepts and recent experimental results that relate to heterogeneity in the physiologic, biochemical, and morphologic properties of mammalian skeletal muscle fibers. Recent data reinforce some of these current concepts while questioning others. The biochemical bases of the concepts of fiber types continue to evolve, particularly in reference to the combinations of the myosin light and heavy chains that are expressed in most mammalian skeletal muscle fibers. Further, it is becoming increasingly clear that specific myosin isoforms relate to contractile function. What remains unclear, however, are the bases for a continuum in functional properties, eg, the maximum velocity of shortening, rather than distinct increments in these properties as might be predicted based on myosin isoforms alone. Clearly, there are factors other than myosin that play a role in defining the characteristics of a fiber, and some of these other factors are discussed. A second general issue addressed in this review is the source of the control of the heterogeneity among fibers of a skeletal muscle. Data are presented that demonstrate that this heterogeneity is not simply a function of the patterns of activation of motoneurons. It appears that the motoneuron can maintain practically all type-related features of fibers in the absence of neuromuscular activity. Although the motoneuron can influence muscle protein expression, it is equally clear that there are myogenic and hormonal factors that have significant regulatory roles. In effect, muscle fiber types reflect a complex interaction of multiple sources of control of protein expression, and the net effect of the control ultimately defines its functional properties.

摘要

在本综述中,我们探讨了与哺乳动物骨骼肌纤维的生理、生化和形态特性异质性相关的当前概念和最新实验结果。最新数据强化了其中一些当前概念,同时也对其他一些概念提出了质疑。纤维类型概念的生化基础仍在不断演变,特别是在大多数哺乳动物骨骼肌纤维中表达的肌球蛋白轻链和重链的组合方面。此外,越来越清楚的是,特定的肌球蛋白同工型与收缩功能相关。然而,尚不清楚的是功能特性连续变化的基础,例如最大缩短速度,而不是仅基于肌球蛋白同工型所预测的这些特性的明显增量。显然,除了肌球蛋白之外,还有其他因素在定义纤维的特性方面发挥作用,本文将讨论其中一些其他因素。本综述探讨的第二个一般性问题是骨骼肌纤维间异质性的控制来源。所呈现的数据表明,这种异质性不仅仅是运动神经元激活模式的函数。在没有神经肌肉活动的情况下,运动神经元似乎能够维持纤维几乎所有与类型相关的特征。虽然运动神经元可以影响肌肉蛋白表达,但同样清楚的是,存在具有重要调节作用的肌源性和激素因素。实际上,肌肉纤维类型反映了蛋白质表达多种控制来源的复杂相互作用,而这种控制的最终净效应决定了其功能特性。

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