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Different Ca2+ releasing action of caffeine and depolarisation in skeletal muscle fibres of the rat

机译:咖啡因对大鼠骨骼肌纤维中Ca2 +的不同释放作用和去极化作用

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摘要

class="enumerated" style="list-style-type:decimal">The relative abilities of caffeine and transverse tubular (T-) system depolarisation to induce Ca2+ release in mammalian skeletal muscle were compared in mechanically skinned fibres of the rat, in order to determine whether normal excitation-contraction (E-C) coupling is achieved by up-regulating the Ca2+-induced Ca2+ release process, as caffeine is known to do.Caffeine triggered Ca2+ release in soleus (slow-twitch) fibres at much lower concentrations than in extensor digitorum longus (EDL) (fast-twitch) fibres when the sarcoplasmic reticulum (SR) of each type was loaded with Ca2+ at close to endogenous levels. The difference in caffeine sensitivity resulted at least in part from the SR being loaded endogenously at near maximal capacity in soleus fibres but at less than half of maximal capacity in EDL fibres. The caffeine sensitivity could be reversed by reversing the relative level of SR loading.The ability of caffeine to induce Ca2+ release was markedly reduced by lowering the level of SR loading or by raising the free [Mg2+] from 1 to 3 mm. Caffeine, even at 30 mm, triggered little or no Ca2+ release in EDL fibres (a) at 1 mm (physiological) Mg2+ when the SR was loaded at two-thirds or less of the endogenous level, and (b) at 3 mm Mg2+ when the SR was loaded at close to the endogenous level. In contrast, depolarisation potently elicited Ca2+ release under these conditions in the same fibres.The inability of 30 mm caffeine to induce Ca2+ release under certain conditions was not attributable to desensitisation or inactivation of the release channels, because there was no response even upon initial exposure to caffeine and depolarisation always remained able to trigger Ca2+ release. It instead appeared that caffeine was a relatively ineffectual stimulus in EDL fibres except under conditions where (a) the SR was heavily loaded, (b) the free [Mg2+] was low, or (c) a high [Cl] was present.These results show that the normal E-C coupling mechanism in mammalian skeletal muscle does not involve just enhancing Ca2+-induced Ca2+ release, and evidently requires the removal or bypassing of the inhibitory effect of Mg2+ on the Ca2+ release channels.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 在大鼠的机械表皮纤维中比较了咖啡因和横管(T-)系统去极化诱导哺乳动物骨骼肌Ca 2 + 释放的相对能力,以确定是否正常收缩。 (EC)耦合是通过上调Ca 2 + 诱导的Ca 2 + 释放过程来实现的,就像咖啡因那样。 当每种类型的肌质网(SR)分别为咖啡因时,咖啡因触发比目鱼肌(慢肌)纤维中Ca 2 + 释放的浓度远低于指长肌(EDL)(快肌)纤维。接近内源水平的Ca 2 + 负载。咖啡因敏感性的差异至少部分是由于比目鱼纤维中的SR内源性负载接近最大容量,而EDL纤维中的SR小于最大容量的一半。逆转SR负荷的相对水平可以逆转咖啡因的敏感性。 降低SR负荷水平或降低SR负荷水平可明显降低咖啡因诱导Ca 2 + 释放的能力。将游离的[Mg 2 + ]从1毫米提高到3毫米。当在30毫米处加载SR时,即使在30毫米时,咖啡因在1毫米(生理)Mg 2 + 时,也不会引起EDL纤维(a)中Ca 2 + 的释放很少或没有。内源水平的三分之二或更少,以及(b)当SR以接近内源水平的水平加载时为3 mm Mg 2 + 。相反,在这些条件下,去极化会在相同的纤维中强烈诱导Ca 2 + 释放。 30 mm咖啡因不能诱导Ca 2 + 在某些条件下的释放并非归因于释放通道的脱敏或失活,因为即使最初接触咖啡因也没有反应,并且去极化始终能够触发Ca 2 + 释放。取而代之的是,咖啡因在EDL纤维中是相对无效的刺激物,除非在以下情况下:(a)SR负荷很重,(b)游离[Mg 2 + ]较低,或(c)这些结果表明,哺乳动物骨骼肌中正常的EC耦合机制不仅仅涉及增强Ca 2 + >诱导的Ca 2 + 释放,显然需要消除或绕开Mg 2 + 对Ca 2 + 释放的抑制作用渠道。

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