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In situ measurements of calpain activity in isolated muscle fibres from normal and dystrophin-lacking mdx mice

机译:正常和缺乏肌营养不良的mdx小鼠离体肌纤维中钙蛋白酶活性的原位测量

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摘要

Calpains are Ca2+-activated proteases that are thought to be involved in muscle degenerative diseases such as Duchenne muscular dystrophy. Status and activity of calpains in adult muscle fibres are poorly documented. We report here in situ measurements of calpain activity in collagenase-isolated fibres from C57 mice and form two models of dystrophy: dystrophin-deficient mdx and calpain-3 knocked-out mice. Calpain activity was measured using a permeant, fluorogenic substrate and its Ca2+ dependence was studied. A 30-fold change of activity was observed between the lowest and the highest steady-state Ca2+ availability. Fast transient changes of [Ca2+]i induced by electrical stimulation or KCl-dependent depolarization were ineffective in activating calpain. Slow [Ca2+] transients, as elicited during depletion of Ca2+ stores, Ca2+ store repletion and hypo-osmotic swelling were able to activate calpain. On return to resting conditions, calpain activity recovered its basal rate within 10 min. In resting intact muscle, μ-calpain was predominantly in the 80 kDa native form, with a small fraction in the 78 kDa autolysed form. The latter is thought to be responsible for the activity measured in our conditions. Calpain activity in mdx fibres showed an average 1.5-fold increase compared to activity in C57 fibres. This activity was reduced by a 10-fold lowering of [Ca2+]o. Calpain-3-deficient fibres showed about the same increase, thus calpain-3 did not contribute to the activity measured here and calpain activation is not specific to dystrophin deficiency. In fibres from transgenic mice over-expressing calpastatin, a 40–50% reduction of calpain activity was observed, as with synthetic drugs (Z-Leu-Leu-CHO and SNT198438). We provide novel information on the physiological factors that control calpain activity in situ, particularly the effect of intracellular Ca2+ transients that occur in excitation–contraction coupling, Ca2+ store depletion and refilling, and activation of mechanosensitive Ca2+ channels.
机译:钙蛋白酶是Ca 2 + 活化的蛋白酶,被认为与肌肉变性疾病(例如杜氏肌营养不良症)有关。成年肌纤维中钙蛋白酶的状态和活性的文献报道很少。我们在这里报告从C57小鼠胶原酶分离的纤维中钙蛋白酶活性的原位测量,并形成营养不良的两个模型:肌营养不良蛋白缺陷型mdx和钙蛋白酶3基因敲除小鼠。使用渗透性荧光底物测量钙蛋白酶活性,并研究其Ca 2 + 依赖性。在最低和最高稳态Ca 2 + 可用性之间观察到30倍的活性变化。电刺激或KCl依赖性去极化引起的[Ca 2 + ] i的快速瞬变对激活钙蛋白酶无效。缓慢的[Ca 2 + ]瞬变,如在Ca 2 + 库耗竭,Ca 2 + 存储库耗竭和低渗膨胀过程中引起能够激活钙蛋白酶。恢复到静止状态后,钙蛋白酶活性在10分钟内恢复了其基础速率。在静止的完整肌肉中,μ-钙蛋白酶主要为80 kDa天然形式,小部分为78 kDa自溶形式。后者被认为是在我们的条件下测量的活动的原因。与C57纤维相比,mdx纤维中的钙蛋白酶活性平均提高了1.5倍。通过降低[Ca 2 + ] o 10倍,该活性降低。缺乏钙蛋白酶3的纤维显示出大致相同的增加,因此钙蛋白酶3对此处测得的活性没有贡献,钙蛋白酶激活并非对肌营养不良蛋白缺乏特异性。在过表达钙蛋白酶抑制剂的转基因小鼠的纤维中,钙蛋白酶活性降低了40-50%,与合成药物一样(Z-Leu-Leu-CHO和SNT198438)。我们提供有关控制钙蛋白酶原位活性的生理因素的新信息,尤其是在激发收缩耦合,Ca 2 + 存储中发生的细胞内Ca 2 + 瞬变的影响机械敏感的Ca 2 + 通道的耗竭和补充以及激活。

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