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Excitation of skinned muscle fibers by imposed ion gradients. II. Influence of quercetin and ATP removal on the Ca2+-insensitive component of stimulated 45Ca efflux

机译:通过施加的离子梯度激发皮肤肌肉纤维。二。槲皮素和ATP去除对刺激的45Ca外排Ca2 +不敏感成分的影响

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摘要

Ionic gradients imposed by choline Cl replacement of K methanesulfonate (Mes) at constant [K][Cl] product stimulate 45Ca efflux from skinned muscle fibers; a small, sustained Ca2+-insensitive efflux component, observed in EGTA, appears to grade a much larger Ca2+-dependent component responsible for contractile activation and is likely to reflect intermediate steps in excitation-contraction coupling. The present studies examined ATP-related effects on the Ca2+-insensitive stimulation. 45Ca efflux was measured on segments of frog semitendinosus muscle skinned by microdissection, with isometric force monitored continuously. The Ca2+-insensitive component was potentiated by quercetin, a flavonoid thought to inhibit the sarcoplasmic reticulum (SR) Ca pump by stabilizing a phosphorylated intermediate. Quercetin increased the stimulated net 45Ca release in the absence of EGTA, as expected from inhibition of reaccumulation, but its effectiveness in EGTA indicated potentiation of unidirectional efflux as such. Quercetin also increased unstimulated (control) 45Ca efflux in EGTA, to a smaller extent; potentiation appeared to be a function of efflux, with stimulation above control loss increased approximately 2.6-fold. ATP removal before stimulation, which led to rigor force and increased stiffness, prevented all quercetin effects in EGTA. ATP removal by itself inhibited ionic stimulation of the Ca2+-insensitive component, with little residual increase above the parallel control loss. Addition of the nonhydrolyzable ATP analogue AMP-PCP ([adenylyl-beta,gamma- methylene]diphosphate) (0.8 mM) after ATP removal gave similar results to ATP-free solution, which suggests that adenine nucleotide binding alone does not support stimulation by choline Cl. These results imply a fundamental role for ATP in the excitation of skinned fibers by imposed diffusion potentials; they also suggest that ATP regulates the SR Ca efflux channel, in a manner that could provide the positive feedback in Ca2+-dependent Ca release.
机译:在恒定的[K] [Cl]乘积下,胆碱Cl置换甲磺酸钾(Mes)产生的离子梯度可刺激皮肤肌肉纤维的45Ca外排;在EGTA中观察到的一个小的,持续的,对Ca2 +不敏感的外排组分似乎对负责收缩激活的更大的Ca2 +依赖性组分进行了分级,并可能反映了激发-收缩偶联的中间步骤。本研究检查了ATP相关的对Ca2 +不敏感刺激的作用。测量通过显微解剖剥皮的青蛙半腱肌节段的45Ca外排,并持续监测等轴测力。 Ca2 +不敏感成分由槲皮素增强,槲皮素是一种类黄酮,被认为可以通过稳定磷酸化的中间体来抑制肌浆网(SR)Ca泵。槲皮素在不存在EGTA的情况下增加了刺激的45Ca净释放,这是从抑制再积累中预期的,但其在EGTA中的有效性表明单向外排本身具有增强作用。槲皮素还可以在较小程度上增加EGTA中未刺激(对照)的45Ca流出。增强作用似乎是外排的函数,高于控制损失的刺激增加了约2.6倍。刺激前去除ATP会导致严格的作用力和增加的刚度,从而阻止了EGTA中的所有槲皮素作用。 ATP本身的去除抑制了对Ca2 +不敏感成分的离子刺激,在平行控制损失之上几乎没有残留增加。去除ATP后添加不可水解的ATP类似物AMP-PCP([腺苷基-β,γ-亚甲基]二磷酸)(0.8 mM)可获得与无ATP溶液相似的结果,这表明单独的腺嘌呤核苷酸结合不支持胆碱刺激Cl。这些结果暗示了ATP通过施加的扩散电势在皮肤纤维的激发中起着基本作用。他们还建议ATP调节SR Ca外排通道,其方式可以为依赖Ca2 +的Ca释放提供正反馈。

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