首页> 美国卫生研究院文献>The Journal of Physiology >Fast activation and inactivation of inositol trisphosphate-evoked Ca2+ release in rat cerebellar Purkinje neurones.
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Fast activation and inactivation of inositol trisphosphate-evoked Ca2+ release in rat cerebellar Purkinje neurones.

机译:大鼠小脑浦肯野神经元中三磷酸肌醇诱发的Ca2 +释放的快速活化和失活。

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摘要

1. Calcium release from stores via inositol trisphosphate (InsP3) activation of intracellular Ca2+ receptor-channels is thought to have a role in regulating the excitability of cerebellar Purkinje neurones. The kinetic characteristics of InsP3 receptor activation in Purkinje neurones are reported here. 2. InsP3 was applied by flash photolysis of caged InsP3 during whole-cell patch clamp. Ca2+ flux into the cytosol was measured with a low-affinity fluorescent Ca2+ indicator and by activation of Ca(2+)-dependent membrane conductance. 3. InsP3 produced Ca2+ release from stores with an initial well-defined delay (mean, 85 ms at 10 microM InsP3), which decreased to less than 20 ms at high InsP3 concentrations. 4. The rate of rise of free [Ca2+], which provides a measure of Ca2+ efflux and InsP3 receptor activation, increased with increasing InsP3 concentration in each cell and had a high absolute value of up to 1400 microM s-1 at 40 microM InsP3. The period of fast efflux was brief, inactivating in 25 ms at low and in 9 ms at high InsP3 concentration. 5. Peak free [Ca2+] was high (mean, 23 microM with a pulse of 40 microM InsP3) and increased with InsP3 concentration up to 80 microM InsP3 tested here. 6. Experiments with a flash-released, stable 5-thio-InsP3 confirm that the low InsP3 sensitivity of Purkinje neurones does not result from metabolism of InsP3. 7. The low functional affinity and fast activation by InsP3 suggest a difference in InsP3 receptor properties from non-neuronal cells tested in the same way. The large Ca2+ efflux and high peak [Ca2] probably result from high InsP3 receptor-channel density. 8. Elevated cytosolic [Ca2+] produced by Ca2+ influx through plasmalemmal Ca2+ channels strongly suppressed InsP3-evoked Ca2+ release from stores. Rapid termination of InsP3-evoked efflux results mainly from inhibition by high [Ca2+]. 9. The fast InsP3 activation kinetics and rapid, strong inactivation by Ca2+ influx suggest that interactions between InsP3-mediated and membrane Ca2+ signalling could occur on a time scale compatible with neuronal excitation.
机译:1.钙通过肌醇三磷酸(InsP3)激活细胞内Ca2 +受体通道释放钙被认为在调节小脑浦肯野神经元的兴奋性中起作用。此处报道了浦肯野神经元中InsP3受体激活的动力学特征。 2.在全细胞膜片钳期间通过笼状InsP3的快速光解法施加InsP3。使用低亲和力的荧光Ca2 +指示剂和通过激活Ca(2+)依赖性膜电导来测量进入胞质溶胶的Ca2 +通量。 3. InsP3从商店产生的Ca2 +释放具有明确定义的初始延迟(在10 microM InsP3中平均为85 ms),在高InsP3浓度下降至不到20 ms。 4.游离[Ca2 +]的升高速率(衡量Ca2 +外排和InsP3受体激活的程度)随每个细胞中InsP3浓度的增加而增加,并且在40 microM InsP3下具有高达1400 microM s-1的绝对值。快速流出的时间很短,在低InsP3浓度下25毫秒内失活,在高InsP3浓度下9毫秒内失活。 5.无峰[Ca2 +]很高(平均值为23 microM,脉冲为40 microM InsP3),并且随InsP3浓度的增加而增加,直至此处测试的80 microM InsP3。 6.用释放的,稳定的5-thio-InsP3进行的实验证实,Purkinje神经元的低InsP3敏感性不是由InsP3的代谢引起的。 7. InsP3的低功能亲和力和快速激活表明,InsP3受体特性与以相同方式测试的非神经元细胞有所不同。大的Ca2 +外排和高的峰[Ca2]可能是由于InsP3受体通道密度高所致。 8. Ca2 +通过质膜Ca2 +通道流入所产生的胞质[Ca2 +]升高,强烈抑制了InsP3引起的Ca2 +从存储中的释放。 InsP3引起的流出快速终止主要是由于高[Ca2 +]的抑制。 9.快速的InsP3激活动力学和Ca2 +大量涌入引起的快速,强烈的失活表明,InsP3介导的和膜Ca2 +信号传导之间的相互作用可能在与神经元兴奋相容的时间尺度上发生。

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