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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >The effect of ionic strength on the kinetics of rigor development in skinned fast-twitch skeletal muscle fibres.
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The effect of ionic strength on the kinetics of rigor development in skinned fast-twitch skeletal muscle fibres.

机译:离子强度对皮肤快速抽搐的骨骼肌纤维中严格发育动力学的影响。

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Recent atomic 3-D reconstructions of the acto-myosin interface suggest that electrostatic interactions are important in the initial phase of cross-bridge formation. Earlier biochemical studies had also given strong evidence for the ionic strength dependence of this step in the cross-bridge cycle. We have probed these interactions by altering the ionic strength (Gamma/2) of the medium mainly with K+, imidazole+ and EGTA2- to vary charge shielding. We examined the effect of ionic strength on the kinetics of rigor development at low Ca2+ (experimental temperature 18-22 degrees C) in chemically skinned single fast-twitch fibres of mouse extensor digitorum longus (EDL) muscle. On average the delay before rigor onset was 10 times longer, the maximum rate of rigor tension development was 10 times slower, the steady-state rigor tension was 3 times lower and the in-phase stiffness was 2 times lower at high (230 mM) compared to low (60 mM) ionic strength. These results were modelled by calculating ATP depletion in the fibre due to diffusional loss of ATP and acto-myosin Mg.ATPase activity. The difference in delay before rigor onset at low and high ionic strength could be explained in our model by assuming a 15 times higher Mg.ATPase activity and a threefold increase in Km in relaxing conditions at low ionic strength. Activation by Ca2+ induced at different time points before and during onset of rigor confirmed the calculated time course of ATP depletion. We have also investigated ionic strength effects on rigor development with the activated troponin/tropomyosin complex. ATP withdrawal at maximum activation by Ca2+ induced force transients which led into a "high rigor" state. The peak forces of these force transients were very similar at low and high ionic strength. The subsequent decrease in tension was only 10% slower and steady-state "high rigor" tension was reduced by only 27% at high compared to low ionic strength. Addition of 10 mM phosphate to lower cross-bridge attachment strongly suppressed the transient increases in force at high ionic strength and reduced the steady-state rigor tension by 17%. A qualitatively similar but smaller effect of phosphate was observed at low ionic strength where steady-state rigor force was reduced by 10%. The data presented in this study show a very strong effect of ionic strength on rigor development in relaxed fibres whereas the ionic strength dependence of rigor development after thin filament activation was much less. The data confirm the importance of electrostatic interactions in cross-bridge attachment and cross-bridge-attachment-induced activation of thin filaments.
机译:肌动蛋白-肌球蛋白界面的最新原子3-D重建表明,静电相互作用在跨桥形成的初始阶段很重要。较早的生化研究也为跨桥循环中此步骤的离子强度依赖性提供了有力的证据。我们已经通过主要使用K +,咪唑+和EGTA2-改变介质的离子强度(Gamma / 2)来改变电荷屏蔽,从而探索了这些相互作用。我们检查了离子强度对低钙离子(实验温度18-22摄氏度)在化学上剥皮的小鼠指趾长肌(EDL)肌肉的单根快速抽搐纤维中严格发育的动力学的影响。平均而言,在高(230 mM)下,严酷发作之前的延迟时间长10倍,最大严酷张力发展速度降低10倍,稳态严酷张力降低3倍,同相刚度降低2倍与低(60 mM)的离子强度相比。通过计算由于ATP的扩散损失和肌动蛋白Mg.ATPase活性导致的纤维中ATP的消耗来模拟这些结果。在低离子强度和高离子强度下,在严格发生之前延迟的差异可以在我们的模型中解释,假设低离子强度下松弛条件下Mg.ATPase活性高15倍,Km增加三倍。在严格发作之前和期间的不同时间点诱导的Ca2 +激活证实了ATP耗竭的时间过程。我们还研究了肌钙蛋白/原肌球蛋白复合物对离子强度对严格发育的影响。在Ca2 +诱导的力瞬变的最大激活下,ATP退出,从而导致“高刚性”状态。在低和高离子强度下,这些力瞬变的峰值力非常相似。随后的张力降低仅慢10%,而与低离子强度相比,稳态的“高刚性”张力在高状态下仅降低27%。在较低的跨桥连接中添加10 mM磷酸盐可在高离子强度下强烈抑制力的瞬时增加,并使稳态的严格张力降低17%。在低离子强度下观察到定性相似但较小的磷酸盐效应,稳态严格力降低了10%。这项研究中提供的数据表明,离子强度对松弛纤维中严格度发展的影响非常强,而细丝活化后,严格度发展对离子强度的依赖性要小得多。数据证实了静电相互作用在跨桥连接和跨桥连接诱导的细丝活化中的重要性。

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