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在去表皮骨骼肌纤维的振荡收缩过程中,肌浆网对钙的处理

Calcium handling by the sarcoplasmic reticulum during oscillatory contractions of skinned skeletal muscle fibres.

作者信息

Szentesi P, Zaremba R, Stienen G J

机构信息

Department of Physiology, University Medical School of Debrecen, Hungary.

出版信息

J Muscle Res Cell Motil. 1998 Aug;19(6):675-87. doi: 10.1023/a:1005385232010.

Abstract

Isometric ATP consumption and force were investigated in mechanically skinned fibres from iliofibularis muscle of Xenopus laevis. Measurements were performed at different [Ca2+], in the presence and absence of caffeine (5 nM). In weakly Ca2+-buffered solutions without caffeine, spontaneous oscillations in force and ATPase activity occurred. The repetition frequency was [Ca2+]-and temperature-dependent. The Ca2+ threshold (+/- SEM) for the oscillations corresponded to a pCa of 6.5 +/- 0.1. The maximum ATP consumption associated with calcium uptake by the sarcoplasmic reticulum (SR) reached during the oscillations was similar to the activity under steady-state conditions at saturating calcium concentrations in the presence of caffeine. Maximum activity was reached when the force relaxation was almost complete. The calculated amount of Ca2+ taken up by the SR during a complete cycle corresponded to 5.4 +/ 0.4 mmol per litre cell volume. In strongly Ca2+-buffered solutions, caffeine enhanced the calcium sensitivity of the contractile apparatus and, at low calcium concentrations, SR Ca uptake. These results suggest that when the SR is heavily loaded by net Ca uptake, there is a massive calcium-induced calcium release. Subsequent net Ca uptake by the SR then gives rise to the periodic nature of the calcium transient.

摘要

对等长收缩时三磷酸腺苷(ATP)的消耗和力量进行了研究,实验对象是非洲爪蟾髂腓肌的机械去膜纤维。在不同的钙离子浓度下,分别在有和没有咖啡因(5纳摩尔)存在的情况下进行测量。在没有咖啡因的弱钙离子缓冲溶液中,力量和ATP酶活性出现自发振荡。重复频率与钙离子浓度和温度有关。振荡的钙离子阈值(±标准误)对应的pCa为6.5±0.1。振荡期间肌浆网(SR)摄取钙所伴随的最大ATP消耗,与在咖啡因存在下钙浓度饱和时的稳态条件下的活性相似。当力量松弛几乎完成时达到最大活性。计算得出,在一个完整周期内肌浆网摄取的钙离子量相当于每升细胞体积5.4±0.4毫摩尔。在强钙离子缓冲溶液中,咖啡因增强了收缩装置对钙的敏感性,并且在低钙浓度下增强了肌浆网对钙的摄取。这些结果表明,当肌浆网因净钙摄取而大量负载时,会有大量的钙诱导钙释放。随后肌浆网的净钙摄取导致了钙瞬变的周期性。

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