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谷氨酸诱导的星形胶质细胞钙信号传导

Glutamate-induced calcium signaling in astrocytes.

作者信息

Kim W T, Rioult M G, Cornell-Bell A H

机构信息

Yale University School of Medicine, Department of Cell Biology, New Haven, Connecticut 06510.

出版信息

Glia. 1994 Jun;11(2):173-84. doi: 10.1002/glia.440110211.

Abstract

Astrocytes respond to the excitatory neurotransmitter glutamate with dynamic spatio-temporal changes in intracellular calcium [Ca2+]i. Although they share a common wave-like appearance, the different [Ca2+]i changes--an initial spike, sustained elevation, oscillatory intracellular waves, and regenerative intercellular waves--are actually separate and distinct phenomena. These separate components of the astrocytic Ca2+ response appear to be generated by two different signal transduction pathways. The metabotropic response evokes an initial spatial Ca2+ spike that can propagate rapidly from cell to cell and appears to involve IP3. The metabotropic response can also produce oscillatory intracellular waves of various amplitudes and frequencies that propagate within cells and are sustained only in the presence of external Ca2+. The ionotropic response, however, evokes a sustained elevation in [Ca2+]i associated with receptor-mediated Na+ and Ca2+ influx, depolarization, and voltage-dependent Ca2+ influx. In addition, the ionotropic response can lead to regenerative intercellular waves that propagate smoothly and nondecrementally from cell to cell, possibly involving Na+/Ca2+ exchange. All these astrocytic [Ca2+]i changes tend to appear wave-like, traveling from region to region as a transient rise in [Ca2+]i. Nevertheless, as our understanding of the cellular events that underlie these [Ca2+]i changes grows, it becomes increasingly clear that glutamate-induced Ca2+ signaling is a composite of separate and distinct phenomena, which may be distinguished not based on appearance alone, but rather on their underlying mechanisms.

摘要

星形胶质细胞对兴奋性神经递质谷氨酸盐的反应是细胞内钙([Ca2+]i)发生动态的时空变化。尽管它们都呈现出类似波的形态,但不同的[Ca2+]i变化——初始尖峰、持续升高、振荡性细胞内波和再生性细胞间波——实际上是相互独立且不同的现象。星形胶质细胞钙反应的这些独立成分似乎由两种不同的信号转导途径产生。代谢型反应引发初始的空间钙尖峰,该尖峰可在细胞间快速传播,似乎涉及肌醇三磷酸(IP3)。代谢型反应还可产生各种幅度和频率的振荡性细胞内波,这些波在细胞内传播,且仅在有细胞外钙存在时持续存在。然而,离子型反应引发[Ca2+]i的持续升高,这与受体介导的钠离子和钙离子内流、去极化以及电压依赖性钙离子内流有关。此外,离子型反应可导致再生性细胞间波,该波在细胞间平稳且无衰减地传播,可能涉及钠/钙交换。所有这些星形胶质细胞的[Ca2+]i变化往往呈现出类似波的形态,作为[Ca2+]i的短暂升高从一个区域传播到另一个区域。然而,随着我们对这些[Ca2+]i变化背后的细胞事件的理解不断加深,越来越清楚的是,谷氨酸诱导的钙信号是由相互独立且不同的现象组成的复合体,其区分可能不仅仅基于外观,还基于其潜在机制。

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