首页> 美国卫生研究院文献>Biophysical Journal >Electrophysiological effects of ryanodine derivatives on the sheep cardiac sarcoplasmic reticulum calcium-release channel.
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Electrophysiological effects of ryanodine derivatives on the sheep cardiac sarcoplasmic reticulum calcium-release channel.

机译:ryanodine衍生物对绵羊心脏肌浆网钙释放通道的电生理作用。

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摘要

We have examined the effects of a number of derivatives of ryanodine on K+ conduction in the Ca2+ release channel purified from sheep cardiac sarcoplasmic reticulum (SR). In a fashion comparable to that of ryanodine, the addition of nanomolar to micromolar quantities to the cytoplasmic face (the exact amount depending on the derivative) causes the channel to enter a state of reduced conductance that has a high open probability. However, the amplitude of that reduced conductance state varies between the different derivatives. In symmetrical 210 mM K+, ryanodine leads to a conductance state with an amplitude of 56.8 +/- 0.5% of control, ryanodol leads to a level of 69.4 +/- 0.6%, ester A ryanodine modifies to one of 61.5 +/- 1.4%, 9,21-dehydroryanodine to one of 58.3 +/- 0.3%, 9 beta,21beta-epoxyryanodine to one of 56.8 +/- 0.8%, 9-hydroxy-21-azidoryanodine to one of 56.3 +/- 0.4%, 10-pyrroleryanodol to one of 52.2 +/- 1.0%, 3-epiryanodine to one of 42.9 +/- 0.7%, CBZ glycyl ryanodine to one of 29.4 +/- 1.0%, 21-p-nitrobenzoyl-amino-9-hydroxyryanodine to one of 26.1 +/- 0.5%, beta-alanyl ryanodine to one of 14.3 +/- 0.5%, and guanidino-propionyl ryanodine to one of 5.8 +/- 0.1% (chord conductance at +60 mV, +/- SEM). For the majority of the derivatives the effect is irreversible within the lifetime of a single-channel experiment (up to 1 h). However, for four of the derivatives, typified by ryanodol, the effect is reversible, with dwell times in the substate lasting tens of seconds to minutes. The effect caused by ryanodol is dependent on transmembrane voltage, with modification more likely to occur and lasting longer at +60 than at -60 mV holding potential. The addition of concentrations of ryanodol insufficient to cause modification does not lead to an increase in single-channel open probability, such as has been reported for ryanodine. At concentrations of > or = 500 mu M, ryanodine after initial rapid modification of the channel leads to irreversible closure, generally within a minute. In contrast, comparable concentrations of beta-alanyl ryanodine do not cause such a phenomenon after modification, even after prolonged periods of recording (>5 min). The implications of these results for the site(s) of interaction with the channel protein and mechanism of the action of ryanodine are discussed. Changes in the structure of ryanodine can lead to specific changes in the electrophysiological consequences of the interaction of the alkaloid with the sheep cardiac SR Ca2+ release channel.
机译:我们已经检查了许多莱丹定衍生物对从绵羊心脏肌浆网(SR)纯化的Ca2 +释放通道中K +传导的影响。以与瑞丹碱相当的方式,在细胞质表面添加纳摩尔至微摩尔量(确切的量取决于衍生物)使通道进入电导率降低的状态,这种情况具有很高的打开可能性。然而,减小的电导状态的幅度在不同的导数之间变化。在对称的210 mM K +中,ryanodine导致电导状态,其幅度为对照的56.8 +/- 0.5%,ryanodol导致水平为69.4 +/- 0.6%,酯A ryanodine修改为61.5 +/- 1.4之一%,9,21-脱氢ryanodine占58.3 +/- 0.3%之一,9 beta,21beta-epoxyryanodine占56.8 +/- 0.8%之一,9-羟基-21-azidoryanodine占56.3 +/- 0.4%之一, 10-吡咯烷醇至52.2 +/- 1.0%之一,3-吡喃二胺至42.9 +/- 0.7%之一,CBZ缩水甘油基ryanodine到29.4 +/- 1.0%之一,21-对硝基苯甲酰基-氨基-9-羟基ryanodine到26.1 +/- 0.5%的其中之一,β-丙氨酰雷诺丁到14.3 +/- 0.5%之一,以及胍基-丙酰ryanodine到5.8 +/- 0.1%之一(+60 mV时弦电导,+ /-SEM )。对于大多数衍生物,在单通道实验的寿命内(长达1小时),这种作用是不可逆的。但是,对于四种以ryanodol为代表的衍生物,其效果是可逆的,在该子状态下的停留时间可持续数十秒至数分钟。由ryanodol引起的效应取决于跨膜电压,与+ -60 mV保持电势相比,在+60时更容易发生修饰并且持续时间更长。不足以引起修饰的ryanodol浓度的添加不会导致单通道开放可能性的增加,如有关ryanodine的报道。在浓度大于或等于500μM时,通常在一分钟内,对通道进行快速修饰后的ryanodine会导致不可逆的闭合。相反,即使经过长时间的记录(> 5分钟),可比较浓度的β-丙氨酰精氨酸在修饰后也不会引起这种现象。讨论了这些结果对于与通道蛋白相互作用的部位以及ryanodine作用机理的影响。 ryanodine结构的变化可导致生物碱与绵羊心脏SR Ca2 +释放通道相互作用的电生理结果发生特定变化。

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