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How Source Content Determines Intracellular Ca2+ Release Kinetics. Simultaneous Measurement of [Ca2+] Transients and [H+] Displacement in Skeletal Muscle

机译:源含量如何确定细胞内Ca2 +释放动力学。骨骼肌中[Ca2 +]瞬态和[H +]位移的同时测量

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摘要

In skeletal muscle, the waveform of Ca2+ release under clamp depolarization exhibits an early peak. Its decay reflects an inactivation, which locally corresponds to the termination of Ca2+ sparks, and is crucial for rapid control. In cardiac muscle, both the frequency of spontaneous sparks (i.e., their activation) and their termination appear to be strongly dependent on the Ca2+ content in the sarcoplasmic reticulum (SR). In skeletal muscle, no such role is established. Seeking a robust measurement of Ca2+ release and a way to reliably modify the SR content, we combined in the same cells the “EGTA/phenol red” method (Pape et al., 1995) to evaluate Ca2+ release, with the “removal” method (Melzer et al., 1987) to evaluate release flux. The cytosol of voltage-clamped frog fibers was equilibrated with EGTA (36 mM), antipyrylazo III, and phenol red, and absorbance changes were monitored simultaneously at three wavelengths, affording largely independent evaluations of Δ[H+] and Δ[Ca2+] from which the amount of released Ca2+ and the release flux were independently derived. Both methods yielded mutually consistent evaluations of flux. While the removal method gave a better kinetic picture of the release waveform, EGTA/phenol red provided continuous reproducible measures of calcium in the SR (CaSR). Steady release permeability (P), reached at the end of a 120-ms pulse, increased as CaSR was progressively reduced by a prior conditioning pulse, reaching 2.34-fold at 25% of resting CaSR (four cells). Peak P, reached early during a pulse, increased proportionally much less with SR depletion, decreasing at very low CaSR. The increase in steady P upon depletion was associated with a slowing of the rate of decay of P after the peak (i.e., a slower inactivation of Ca2+ release). These results are consistent with a major inhibitory effect of cytosolic (rather than intra-SR) Ca2+ on the activity of Ca2+ release channels.
机译:在骨骼肌中,钳夹去极化作用下Ca 2+释放的波形显示出一个早期峰值。它的衰减反映了一种失活,该失活局部对应于Ca2 +火花的终止,对于快速控制至关重要。在心肌中,自发火花的频率(即其激活)及其终止似乎都强烈依赖于肌质网(SR)中的Ca2 +含量。在骨骼肌中,没有建立这样的作用。为了可靠地测量Ca2 +的释放并可靠地改变SR含量,我们在同一单元格中结合了“ EGTA /酚红”方法(Pape等,1995)和“去除”方法来评估Ca2 +的释放。 (Melzer et al。,1987)评价释放通量。用EGTA(36 mM),抗pyrylazozo III和酚红平衡电压钳定的青蛙纤维的细胞溶质,并同时监测三个波长的吸光度变化,从而对Δ[H +]和Δ[Ca2 +]进行很大程度上独立的评估。 Ca 2+的释放量和释放通量是独立得出的。两种方法均产生了相互一致的通量评估。尽管去除方法可以更好地了解释放波形,但EGTA /酚红提供了可重复测量SR(CaSR)中钙的方法。稳定释放通透性(P)在120毫秒脉冲结束时达到,随着CaSR被先前的调节脉冲逐渐降低而增加,在静息CaSR(四个细胞)的25%时达到2.34倍。峰值P在一个脉冲的早期到达,随着SR的消耗成比例地增加,而在非常低的CaSR时减小。耗尽后稳态P的增加与峰后P的衰减速率减慢有关(即,Ca2 +释放失活较慢)。这些结果与胞质(而不是SR内)Ca2 +对Ca2 +释放通道活性的主要抑制作用一致。

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