首页> 外文期刊>The Journal of general physiology >Effects of low myoplasmic Mg2+ on calcium binding by parvalbumin and calcium uptake by the sarcoplasmic reticulum in frog skeletal muscle.
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Effects of low myoplasmic Mg2+ on calcium binding by parvalbumin and calcium uptake by the sarcoplasmic reticulum in frog skeletal muscle.

机译:低肌质Mg2 +对青蛙骨骼肌中小白蛋白钙结合和肌浆网钙摄取的影响。

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The effects of low intracellular free Mg2+ on the myoplasmic calcium removal properties of skeletal muscle were studied in voltage-clamped frog skeletal muscle fibers by analyzing the changes in intracellular calcium and magnesium due to membrane depolarization under various conditions of internal free [Mg2+]. Batches of fibers were internally equilibrated with cut end solutions containing two calcium indicators, antipyrylazo III (AP III) and fura-2, and different concentrations of free Mg2+ (25 microM-1 mM) obtained by adding appropriate total amounts of ATP and magnesium to the solutions. Changes in AP III absorbance were used to monitor [Ca2+] and [Mg2+] transients, whereas fura-2 fluorescence was mostly used to monitor resting [Ca2+]. Shortly after applying an internal solution containing less than 60 microM free Mg2+ to the cut ends of depolarized fibers most of the fibers exhibited spontaneous repetitive movements, suggesting that free internal Mg2+ might affect the activity of the sarcoplasmic reticulum (SR) calcium channels at rest. The spontaneous contractions generally subsided. In polarized fibers the maximal amplitude of the calcium transient elicited by a depolarizing pulse was about the same whatever the internal [Mg2+], but its decay after the end of the pulse slower in low [Mg2+]. In low [Mg2+] (less than 0.14 mM), the mean rate constant of decay obtained from fitting a single exponential plus a constant to the decay of the calcium transients was approximately 30% of its value in the control fibers (1 mM internal [Mg2+]). A model characterizing the main calcium removal properties of a frog skeletal muscle fiber, including the SR pump and the Ca-Mg sites on parvalbumin, was fitted to the decay of the calcium transients. Results of the fits show that in low internal [Mg2+] the slowing of the decay of the calcium transient can be well predicted by both a decreased rate of SR calcium uptake and an expected decreased resting magnesium occupancy of parvalbumin leading to a reduced contribution of parvalbumin to the overall rate of calcium removal. These results are thus consistent with the known properties of parvalbumin as a Ca-Mg buffer and furthermore suggest that in an intact portion of a muscle fiber, the activity of the SR calcium pump can be affected by the level of free Mg2+.
机译:通过分析在各种内部自由 [Mg2 +]条件下膜去极化引起的细胞内钙和镁的变化,研究了电压钳制的青蛙骨骼肌纤维中低细胞内游离Mg2 +对骨骼肌肌钙去除特性的影响。用含有两种钙指示剂,抗pyyryllazo III(AP III)和fura-2以及不同浓度的游离Mg2 +(25 microM-1 mM)的最终溶液在内部对一批纤维进行平衡,这些溶液通过添加适量的ATP和镁解决方案。 AP III吸光度的变化用于监测[Ca2 +]和[Mg2 +]的瞬变,而fura-2荧光主要用于监测静止的[Ca2 +]。在将含有少于60 microM游离Mg2 +的内部溶液施加到去极化纤维的切割端后不久,大多数纤维表现出自发的重复运动,这表明游离的内部Mg2 +可能会影响静止的肌浆网(SR)钙通道的活性。自发性收缩通常会消退。在极化光纤中,由去极化脉冲引起的钙瞬变的最大振幅与内部[Mg2 +]无关,但在脉冲结束后其衰减在低[Mg2 +]时变慢。在低[Mg2 + ](小于0.14 mM)下,通过拟合单个指数加上钙瞬变衰减的常数而获得的平均衰减速率常数约为对照纤维中其值的30%(内部为1 mM [Mg2 +]。将表征青蛙骨骼肌纤维主要钙去除特性的模型(包括SR泵和小白蛋白上的Ca-Mg部位)拟合为钙瞬变的衰减。拟合结果表明,在较低的内部[Mg2 +]中,可以通过降低SR钙摄取率和预期的小白蛋白静息镁占有率降低(导致小白蛋白的贡献减少)很好地预测钙瞬变的衰减减慢去除钙的总体速度。因此,这些结果与小白蛋白作为Ca-Mg缓冲液的已知特性一致,并且进一步表明,在肌纤维的完整部位,SR钙泵的活性可能受游离Mg2 +的水平影响。

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