首页> 美国卫生研究院文献>The Journal of General Physiology >Variations in cross-bridge attachment rate and tension with phosphorylation of myosin in mammalian skinned skeletal muscle fibers. Implications for twitch potentiation in intact muscle
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Variations in cross-bridge attachment rate and tension with phosphorylation of myosin in mammalian skinned skeletal muscle fibers. Implications for twitch potentiation in intact muscle

机译:哺乳动物皮肤骨骼肌纤维中肌球蛋白磷酸化的跨桥附着率和张力的变化。完整肌中抽搐增强的意义

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摘要

The Ca2+ sensitivities of the rate constant of tension redevelopment (ktr; Brenner, B., and E. Eisenberg. 1986. Proceedings of the National Academy of Sciences. 83:3542-3546) and isometric force during steady- state activation were examined as functions of myosin light chain 2 (LC2) phosphorylation in skinned single fibers from rabbit and rat fast- twitch skeletal muscles. To measure ktr the fiber was activated with Ca2+ and steady isometric tension was allowed to develop; subsequently, the fiber was rapidly (less than 1 ms) released to a shorter length and then reextended by approximately 200 nm per half sarcomere. This maneuver resulted in the complete dissociation of cross-bridges from actin, so that the subsequent redevelopment of tension was related to the rate of cross-bridge reattachment. The time course of tension redevelopment, which was recorded under sarcomere length control, was best fit by a first-order exponential equation (i.e., tension = C(1 - e- kt) to obtain the value of ktr. In control fibers, ktr increased sigmoidally with increases in [Ca2+]; maximum values of ktr were obtained at pCa 4.5 and were significantly greater in rat superficial vastus lateralis fibers (26.1 +/- 1.2 s-1 at 15 degrees C) than in rabbit psoas fibers (18.7 +/- 1.0 s-1). Phosphorylation of LC2 was accomplished by repeated Ca2+ activations (pCa 4.5) of the fibers in solutions containing 6 microM calmodulin and 0.5 microM myosin light chain kinase, a protocol that resulted in an increase in LC2 phosphorylation from approximately 10% in the control fibers to greater than 80% after treatment. After phosphorylation, ktr was unchanged at maximum or very low levels of Ca2+ activation. However, at intermediate levels of Ca2+ activation, between pCa 5.5 and 6.2, there was a significant increase in ktr such that this portion of the ktr-pCa relationship was shifted to the left. The steady-state isometric tension-pCa relationship, which in control fibers was left shifted with respect to the ktr-pCa relationship, was further left-shifted after LC2 phosphorylation. Phosphorylation of LC2 had no effect upon steady-state tension during maximum Ca2+ activation. In fibers from which troponin C was partially extracted to disrupt molecular cooperativity within the thin filament (Moss et al. 1985. Journal of General Physiology. 86:585- 600), the effect of LC2 phosphorylation to increase the Ca2+ sensitivity of steady-state isometric force was no longer evident, although the effect of phosphorylation to increase ktr was unaffected by this maneuver.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:张力重建速率常数的Ca2 +敏感性(ktr; Brenner,B.和E. Eisenberg。1986.美国国家科学院院刊。83:3542-3546)和稳态激活过程中的等轴测力兔和大鼠快速抽搐骨骼肌的皮肤单纤维中肌球蛋白轻链2(LC2)磷酸化的功能。为了测量ktr,用Ca 2+活化纤维,并产生稳定的等轴测张力。随后,纤维被迅速释放(少于1毫秒)到较短的长度,然后每半个肌节再延长约200 nm。这种操作导致跨桥与肌动蛋白完全分离,因此随后的张力重建与跨桥重新连接的速率有关。在肌节长度控制下记录的张力重建的时间过程,最好通过一阶指数方程式(即,张力= C(1- e-kt))拟合以获得ktr的值。随着[Ca2 +]的增加呈S形增加;在pCa 4.5处获得了最大的ktr值,并且大鼠浅表股外侧肌(15摄氏度时为26.1 +/- 1.2 s-1)比兔子腰大肌纤维(18.7 + /-1.0 s-1)。LC2的磷酸化是通过在含有6 microM钙调蛋白和0.5 microM肌球蛋白轻链激酶的溶液中对纤维进行重复的Ca2 +活化(pCa 4.5)来完成的,该方案导致LC2磷酸化程度从大约对照纤维中的10%到处理后大于80%。磷酸化后,在最大或非常低的Ca2 +活化水平下ktr保持不变,但是在中等Ca2 +活化水平下,在pCa 5.5和6.2之间,ktr显着增加e以ktr为单位,这样ktr-pCa关系的这一部分向左移动。 LC2磷酸化后,在控制纤维中相对于ktr-pCa关系左移的稳态等距张力-pCa关系式进一步左移。在最大的Ca2 +活化过程中,LC2的磷酸化对稳态张力没有影响。在从中部分提取肌钙蛋白C破坏细丝内分子协同性的纤维中(Moss et al。1985. Journal of General Physiology。86:585-600),LC2磷酸化的作用是增加稳态下Ca2 +的敏感性。等距作用力不再明显,尽管磷酸化增加ktr的作用不受此操作的影响(摘要截断为400字)

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