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Alterations in intracellular calcium and tension of activated ferret papillary muscle in response to step length changes.

机译:响应步长变化激活的雪貂乳头肌细胞内钙和张力的变化。

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摘要

1. To study the effects of mechanical constraints on the calcium (Ca2+) affinity of cardiac troponin C, we analysed the tension and aequorin light (AL, intracellular Ca2+) transients in response to a step length change in aequorin-injected ferret right ventricular papillary muscles. The muscle preparations were continuously activated with ouabain (10(-4) M) (ouabain contracture) or with high frequency stimuli in the presence of ryanodine (5 microM) (tetanic contraction). 2. The tension transient in response to either the release or stretch was oscillatory: tension decreased rapidly during the release and then increased, after which it lapsed into a new steady level in a series of damped oscillations. The opposite was true for the stretch. The oscillatory responses were conspicuous and less damped in ouabain-activated preparations (oscillation frequency of 2.2-2.3 Hz at 22 degrees and 4.5-4.6 Hz at 30 degrees C) and much more damped in ryanodine-treated preparations. 3. The transient AL response was also oscillatory, the time course of which corresponded to that of the transient tension response. Regardless of the difference in the time course of the transients in two different preparations and at two different temperatures, the increase in AL corresponded to the decrease in tension, likewise the decrease in AL to the increase in tension. 4. The mean level of AL after release was lower than the control level present just prior to the release in ouabain-activated preparations, but the AL after release finally returned to the nearly control level in ryanodine-treated preparations. 5. When the ryanodine-treated muscle was further treated with 2,3-butanedione monoxime (BDM) (20 mM), the tetanic tension decreased remarkably without affecting the AL signal. The tension transient of this preparation was quite similar to that of the resting muscle, which changed in a nearly stepwise fashion; AL was hardly affected by step length changes, as in the resting muscle, in spite of the higher AL level. 6. These results suggest that the Ca2+ affinity of cardiac troponin C is increased with an increase in tension (i.e. the cross-bridge attachment) and decreased with a decrease in tension i.e. the cross-bridge detachment), and that the mean [Ca2+]i is lowered by release, at least in a Ca(2+)-overloaded condition, mainly through the sarcoplasmic reticulum.
机译:1.为研究机械性约束对心肌肌钙蛋白C的钙(Ca2 +)亲和力的影响,我们分析了由水母蛋白注射的雪貂右心室乳头的步长变化引起的张力和水母发光蛋白光(AL,细胞内Ca2 +)瞬变肌肉。肌肉制剂用哇巴因(10(-4)M)(哇巴因挛缩)或在ryanodine(5 microM)存在下高频刺激(强直性紧缩)连续激活。 2.响应于释放或拉伸的张力瞬态是振荡的:在释放期间,张力迅速下降,然后增加,此后在一系列阻尼振荡中,它下降到新的稳定水平。情况恰恰相反。在哇巴因活化的制剂中,振荡响应明显且衰减较小(在22度时为2.2-2.3 Hz,在30℃时为4.5-4.6 Hz),而在用精氨酸处理的制剂中则较大。 3.瞬态AL响应也是振荡的,其时间过程与瞬态张力响应的时间过程相对应。无论在两种不同的制剂中以及在两种不同的温度下瞬变的时间过程如何不同,AL的增加都对应于张力的降低,AL的减少也对应于张力的增加。 4.释放后的AL的平均水平低于哇巴因活化的制剂中释放前的对照水平,但是释放后的AL最终在用雷诺丁处理的制剂中恢复到接近对照的水平。 5.当用2,3-丁二酮单肟(BDM)(20 mM)进一步处理了用ryanodine处理的肌肉时,强直张力明显降低,而不会影响AL信号。这种制剂的张力瞬变与静息肌的瞬态张力非常相似,后者几乎以逐步的方式变化。尽管AL水平较高,但AL几乎不受步长变化的影响,如静息肌。 6.这些结果表明,心肌肌钙蛋白C的Ca2 +亲和力随张力的增加(即,跨桥附着)而增加,而随张力的降低(即,跨桥脱离)而降低,并且其平均值[Ca2 +]我通过释放,至少在Ca(2+)重载的条件下,主要是通过肌质网降低了。

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