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首页> 外文期刊>American Journal of Physiology >Activation of cardiac ryanodine receptors by cardiac glycosides.
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Activation of cardiac ryanodine receptors by cardiac glycosides.

机译:强心苷激活强心ryanodine受体。

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This study investigated the effects of cardiac glycosides on single-channel activity of the cardiac sarcoplasmic reticulum (SR) Ca2+ release channels or ryanodine receptor (RyR2) channels and how this action might contribute to their inotropic and/or toxic actions. Heavy SR vesicles isolated from canine left ventricle were fused with artificial planar lipid bilayers to measure single RyR2 channel activity. Digoxin and actodigin increased single-channel activity at low concentrations normally associated with therapeutic plasma levels, yielding a 50% of maximal effect of approximately 0.2 nM for each agent. Channel activation by glycosides did not require MgATP and occurred only when digoxin was applied to the cytoplasmic side of the channel. Similar results were obtained in human RyR2 channels; however, neither the crude skeletal nor the purified cardiac channel was activated by glycosides. Channel activation was dependent on [Ca2+] on the luminal side of the bilayer with maximal stimulation occurring between 0.3 and 10 mM. Rat RyR2 channels were activated by digoxin only at 1 microM, consistent with the lower sensitivity to glycosides in rat heart. These results suggest a model in which RyR2 channel activation by digoxin occurs only when luminal [Ca2+] was increased above 300 microM (in the physiological range). Consequently, increasing SR load (by Na+ pump inhibition) serves to amplify SR release by promoting direct RyR2 channel activation via a luminal Ca2+-sensitive mechanism. This high-affinity effect of glycosides could contribute to increased SR Ca2+ release and might play a role in the inotropic and/or toxic actions of glycosides in vivo.
机译:这项研究调查了强心苷对心脏肌浆网(SR)Ca2 +释放通道或ryanodine受体(RyR2)通道的单通道活性的影响,以及这种作用可能如何促进其正性肌力和/或毒性作用。从犬左心室分离的重型SR囊泡与人工平面脂质双层融合,以测量单个RyR2通道活性。地高辛和放线菌素在通常与治疗性血浆水平相关的低浓度下增加了单通道活性,对每种药物产生的最大效应约为0.2 nM的50%。糖苷激活通道不需要MgATP,仅在将地高辛应用于通道的细胞质侧时才发生。在人类RyR2通道中获得了相似的结果;然而,粗糖和纯化的心脏通道都没有被糖苷激活。通道激活取决于双层腔内的[Ca2 +],最大刺激发生在0.3至10 mM之间。大鼠RyR2通道仅在1 microM时被地高辛激活,这与大鼠心脏中对糖苷的较低敏感性相一致。这些结果表明仅当腔[Ca2 +]增加到300 microM以上(在生理范围内)时,地高辛激活RyR2通道的模型。因此,增加的SR负荷(通过Na +泵抑制作用)可通过促进腔内Ca2 +敏感机制促进RyR2通道直接激活来放大SR释放。糖苷的这种高亲和力作用可能有助于增加SR Ca2 +的释放,并可能在体内糖苷的正性和/或毒性作用中起作用。

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