首页> 外文期刊>The Journal of Physiology >Effects of membrane cholesterol manipulation on excitation-contraction coupling in skeletal muscle of the toad.
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Effects of membrane cholesterol manipulation on excitation-contraction coupling in skeletal muscle of the toad.

机译:膜胆固醇操纵对蟾蜍骨骼肌兴奋-收缩偶联的影响。

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1. Single mechanically skinned fibres and intact bundles of fibres from the twitch region of the iliofibularis muscle of cane toads were used to investigate the effects of membrane cholesterol manipulation on excitation-contraction (E-C) coupling. The cholesterol content of membranes was manipulated with methyl-beta-cyclodextrin (MbetaCD). 2. In mechanically skinned fibres, depletion of membrane cholesterol with MbetaCD caused a dose- and time-dependent decrease in transverse tubular (t)-system depolarization-induced force responses (TSDIFRs). TSDIFRs were completely abolished within 2 min in the presence of 10 mM MbetaCD but were not affected after 2 min in the presence of a 10 mM MbetaCD-1 mM cholesterol complex. There was a very steep dependence between the change in TSDIFRs and the MbetaCD : cholesterol ratio at 10 mM MbetaCD, indicating that the inhibitory effect of MbetaCD was due to membrane cholesterol depletion and not to a pharmacological effect of the agent. Tetanic responses in bundles of intact fibres were abolished after 3-4 h in the presence of 10 mM MbetaCD. 3. The duration of TSDIFRs increased markedly soon (< 2 min) after application of 10 mM MbetaCD and 10 mM MbetaCD-cholesterol complexes, but the Ca(2+) activation properties of the contractile apparatus were minimally affected by 10 mM MbetaCD. The Ca(2+) handling abilities of the sarcoplasmic reticulum appeared to be modified after 10 min exposure to 10 mM MbetaCD. 4. Confocal laser scanning microscopy revealed that the integrity of the t-system was not compromised by either intra- or extracellular application of 10 mM MbetaCD and that a large [Ca(2+)] gradient was maintained across the t-system. 5. Membrane cholesterol depletion caused rapid depolarization of the polarized t-system as shown independently by spontaneous TSDIFRs induced by MbetaCD and by changes in the fluorescence intensity of an anionic potentiometric dye (DiBAC(4)(3)) in the presence of MbetaCD. This rapid depolarization of the t-system by cholesterol depletion was not prevented by blocking the Na(+) channels with TTX (10 microM) or the L-type Ca(2+) channels with Co(2+) (5 mM). 6. The results demonstrate that cholesterol is important for maintaining the functional integrity of the t-system and sarcoplasmic reticulum, probably by having specific effects on different membrane proteins that may be directly or indirectly involved in E-C coupling.
机译:1.使用单根机械剥皮的纤维和来自蟾蜍蟾蜍腓肠肌抽动区的完整纤维束来研究膜胆固醇操纵对兴奋收缩(E-C)耦合的影响。膜的胆固醇含量用甲基-β-环糊精(MbetaCD)处理。 2.在机械表皮的纤维中,MbetaCD消耗膜胆固醇会导致横向管状(t)系统去极化引起的力反应(TSDIFRs)的剂量和时间依赖性下降。在存在10 mM MbetaCD的情况下,在2分钟内TSDIFRs完全被消除,但是在存在10 mM MbetaCD-1 mM胆固醇复合物的情况下,在2分钟后TSDIFRs没有受到影响。在10 mM MbetaCD处,TSDIFRs的变化与MbetaCD:胆固醇比率之间存在非常强烈的依赖性​​,这表明MbetaCD的抑制作用是由于膜胆固醇的消耗而不是药物的药理作用。在存在10 mM MbetaCD的情况下3-4小时后,完整纤维束中的破伤风反应将消失。 3.应用10 mM MbetaCD和10 mM MbetaCD-胆固醇复合物后,TSDIFRs的持续时间显着增加(<2分钟),但10 mM MbetaCD对收缩装置的Ca(2+)活化特性影响最小。肌浆网的Ca(2+)处理能力似乎在10分钟暴露于10 mM MbetaCD后被修改。 4.共聚焦激光扫描显微镜显示,通过10 mM MbetaCD的细胞内或细胞外应用,不会损害t系统的完整性,并且在整个t系统上都保持了较大的[Ca(2+)]梯度。 5.膜胆固醇的消耗引起极化t系统的快速去极化,如由MbetaCD诱导的自发TSDIFRs和存在MbetaCD的阴离子电位染料(DiBAC(4)(3))的荧光强度变化独立显示。通过阻止TTX(10 microM)的Na(+)通道或Co(2+)(5 mM)的L型Ca(2+)通道,无法阻止胆固醇耗尽对t系统的这种快速去极化。 6.结果表明,胆固醇对于维持t系统和肌质网的功能完整性很重要,这可能是通过对可能直接或间接参与E-C偶联的不同膜蛋白产生特定影响而实现的。

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