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首页> 外文期刊>The Journal of Physiology >Ryanodine stores and calcium regulation in the inner segments of salamander rods and cones.
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Ryanodine stores and calcium regulation in the inner segments of salamander rods and cones.

机译:yan杆和视锥细胞内部的节段中的Ryanodine存储和钙调节。

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Despite the prominent role played by intracellular Ca2+ stores in the regulation of neuronal Ca2+ homeostasis and in invertebrate photoreception, little is known about their contribution to the control of free Ca2+ concentration ([Ca2+]i) in the inner segments of vertebrate photoreceptors. Previously, caffeine-sensitive intracellular Ca2+ stores were shown to play a role in regulating glutamate release from photoreceptors. To understand the properties of these intracellular stores better we used pharmacological approaches that alter the dynamics of storage and release of Ca2+ from intracellular compartments. Caffeine evoked readily discernible changes in [Ca2+]i in the inner segments of rods, but not cones. Caffeine-evoked Ca2+ responses in cone inner segments were unmasked in the presence of inhibitors of the plasma membrane Ca2+ ATPases (PMCAs) and mitochondrial Ca2+ sequestration. Caffeine-evoked responses were blocked by ryanodine, a selective blocker of Ca2+ release and by cyclopiazonic acid, a blocker of Ca2+ sequestration into the endoplasmic reticulum. These two inhibitors also substantially reduced the amplitude of depolarization-evoked [Ca2+]i increases, providing evidence for Ca2+-induced Ca2+ release (CICR) in rods and cones. The magnitude and kinetics of caffeine-evoked Ca2+ elevation depended on the basal [Ca2+]i, PMCA activity and on mitochondrial function. These results reveal an intimate interaction between the endoplasmic reticulum, voltage-gated Ca2+ channels, PMCAs and mitochondrial Ca2+ stores in photoreceptor inner segments, and suggest a role for CICR in the regulation of synaptic transmission.
机译:尽管细胞内Ca2 +储存在神经元Ca2 +稳态调节和无脊椎动物光感受中起着重要作用,但关于它们对脊椎动物感光细胞内部游离Ca2 +浓度([Ca2 +] i)控制的贡献知之甚少。以前,咖啡因敏感的细胞内Ca2 +存储被证明在调节感光器释放的谷氨酸中发挥作用。为了更好地了解这些细胞内存储的特性,我们使用了药理学方法来改变细胞内隔室中Ca2 +的存储和释放动力学。咖啡因引起杆内段[Ca2 +] i的变化很明显,但锥孔内没有变化。在存在质膜Ca2 + ATPases(PMCAs)和线粒体Ca2 +螯合的抑制剂存在下,在锥体内部的咖啡因诱发的Ca2 +反应没有被掩盖。咖啡因引起的反应被ryanodine(一种选择性的Ca2 +释放阻滞剂)和环吡唑酸(一种Ca2 +螯合进入内质网的阻滞剂)阻滞。这两种抑制剂还显着降低了去极化引起的[Ca2 +] i升高的幅度,为杆和锥中Ca2 +诱导的Ca2 +释放(CICR)提供了证据。咖啡因诱发的Ca2 +升高的幅度和动力学取决于基础[Ca2 +] i,PMCA活性和线粒体功能。这些结果揭示了内质网,电压门控的Ca2 +通道,PMCA和线粒体Ca2 +在感光器内部区段中的密切相互作用,并暗示了CICR在突触传递调控中的作用。

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