首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Regulation of skeletal muscle stiffness and elasticity by titin isoforms: a test of the segmental extension model of resting tension.
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Regulation of skeletal muscle stiffness and elasticity by titin isoforms: a test of the segmental extension model of resting tension.

机译:肌动蛋白亚型对骨骼肌刚度和弹性的调节:静息张力节段扩展模型的测试。

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摘要

To explore the role of titin filaments in muscle elasticity, we measured the resting tension-sarcomere length curves of six rabbit skeletal muscles that express three size classes of titin isoform. The stress-strain curves of the split fibers of these muscles displayed a similar multiphasic shape, with an exponential increase in tension at low sarcomere strain followed by a leveling of tension and a decrease in stiffness at and beyond an elastic limit (yield point) at higher sarcomere strain. Significantly, positive correlations exist between the size of the expressed titin isoform, the sarcomere length at the onset of exponential resting tension, and the yield point of each muscle. Immunoelectron microscopic studies of an epitope in the extensible segment of titin revealed a transition in the elastic behavior of the titin filaments near the yield point sarcomere length of these muscles, providing direct evidence of titin's involvement in the genesis of resting tension. Our data led to the formulation of a segmental extension model of resting tension that recognizes the interplay of three major factors in shaping the stress-strain curves: the net contour length of an extensible segment of titin filaments (between the Z line and the ends of the thick filaments), the intrinsic molecular elasticity of titin, and the strength of titin thick filament anchorage. Our data further suggest that skeletal muscle cells may control and modulate stiffness and elastic limit coordinately by selective expression of specific titin isoforms.
机译:为了探究肌动蛋白丝在肌肉弹性中的作用,我们测量了表达三种肌动蛋白同工型的六只兔骨骼肌的静息张力-肌节长度曲线。这些肌肉的分裂纤维的应力-应变曲线显示出相似的多相形状,在低肌节应变下,张力呈指数级增加,随后达到或超过弹性极限(屈服点)时,张力趋于平均,刚度降低。较高的肌小肌张力。显着地,表达的泰坦同工型的大小,指数静息张力开始时的肌节长度与每条肌肉的屈服点之间存在正相关。肌动蛋白可延伸部分的抗原决定簇的免疫电子显微镜研究表明,肌动蛋白丝的弹性行为在这些肌肉的屈服点肌节长度附近转变,这提供了肌动蛋白参与静息张力发生的直接证据。我们的数据导致建立了静息张力的分段延伸模型,该模型认识到在塑造应力-应变曲线时三个主要因素之间的相互作用:钛纤丝的可延伸部分的净轮廓长度(Z线与末端之间)。粗丝),肌动蛋白的内在分子弹性以及肌动蛋白粗丝锚定的强度。我们的数据进一步表明,骨骼肌细胞可能通过选择性表达特定的肌动蛋白同工型来协调控制和调节刚度和弹性极限。

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