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大鼠骨骼肌同工型肌球蛋白在代偿性生长和消退过程中的时程适应性

Time course adaptations in rat skeletal muscle isomyosins during compensatory growth and regression.

作者信息

Tsika R W, Herrick R E, Baldwin K M

机构信息

Department of Physiology and Biophysics, University of California, Irvine 92717.

出版信息

J Appl Physiol (1985). 1987 Nov;63(5):2111-21. doi: 10.1152/jappl.1987.63.5.2111.

Abstract

The purpose of this study was to ascertain the time course of change during both compensatory growth (hypertrophy) and subsequent growth regression on myosin isoform expression in rodent fast-twitch plantaris muscle in response to functional overload (induced by removal of synergists). Peak hypertrophy of the plantaris muscle (92%) occurred after 9 wk of overload. After 7 wk of overload regression (induced by a model of hindlimb unweighting), muscle weight returned to within 30% of control values. Myofibril protein content (mg/g muscle) remained relatively constant throughout the overload period but became significantly depressed relative to control values after 7 wk of regression. However, when expressed on a per muscle basis (mg/muscle) no differences existed at this time point (t = 7 wk regression). The distribution of native myosin isoforms in the myofibril protein pool of the overloaded plantaris muscle reflected a progressive increase (23% at t = 9 wk; P less than 0.001) in the relative proportion of slow myosin (Sm). This change was also accompanied by increases in intermediate myosin (Im) as well as the repression of the fast myosin one (Fm1) isoform (P less than 0.001). These shifts in Sm and Fm1 isoform expression were gradually reversed during the regression period, whereas Im remained elevated relative to control values. These adaptive changes in myosin isoform expression during both hypertrophy and regression were further supported by concomitant shifts in both myosin adenosinetriphosphatase (ATPase) activity (decreased during overload) and slow myosin light chain (SLC) expression. However, during regression the changes in myosin isoform expression and myosin ATPase were not as synchronous as they were during overload. Estimation of the mixed myosin heavy chain (MHC) half-life (t 1/2), using a linear model that assumes zero-order synthesis and first-order degradation kinetics, revealed t 1/2 values of approximately 19 and 10 days for the overload and regression periods, respectively. Collectively these data suggest that 1) skeletal muscle myosin isoforms and corresponding ATPase activity are in a dynamic state of change, although not completely synchronous, in response to altered muscle stress, and 2) the kinetics of change in the mixed MHC protein pool are slower during compensatory growth compared with regression of growth.

摘要

本研究的目的是确定在功能性过载(通过切除协同肌诱导)后,啮齿动物快肌型跖肌中肌球蛋白同工型表达在代偿性生长(肥大)及随后的生长消退过程中的变化时间进程。跖肌的峰值肥大(92%)在过载9周后出现。在过载消退7周后(通过后肢去负荷模型诱导),肌肉重量恢复到对照值的30%以内。在整个过载期,肌原纤维蛋白含量(mg/g肌肉)保持相对恒定,但在消退7周后相对于对照值显著降低。然而,以每块肌肉为基础表示(mg/肌肉)时,在这个时间点(t = 7周消退)没有差异。过载的跖肌肌原纤维蛋白池中天然肌球蛋白同工型的分布反映出慢肌球蛋白(Sm)的相对比例逐渐增加(在t = 9周时增加23%;P < 0.001)。这种变化还伴随着中间肌球蛋白(Im)的增加以及快肌球蛋白1(Fm1)同工型的抑制(P < 0.001)。在消退期,Sm和Fm1同工型表达的这些变化逐渐逆转,而Im相对于对照值仍保持升高。肥大和消退过程中肌球蛋白同工型表达的这些适应性变化进一步得到肌球蛋白腺苷三磷酸酶(ATPase)活性(在过载期间降低)和慢肌球蛋白轻链(SLC)表达的相应变化的支持。然而,在消退期,肌球蛋白同工型表达和肌球蛋白ATPase的变化不如过载期间同步。使用假设零级合成和一级降解动力学的线性模型估计混合肌球蛋白重链(MHC)的半衰期(t 1/2),发现在过载期和消退期的t 1/2值分别约为19天和10天。总体而言,这些数据表明:1)骨骼肌肌球蛋白同工型和相应的ATPase活性处于动态变化状态,尽管不完全同步,以响应改变的肌肉应激;2)与生长消退相比,代偿性生长期间混合MHC蛋白池的变化动力学较慢。

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