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神经元细胞中钙离子稳态的调控。

Control of Ca2+ homeostasis in neuronal cells.

作者信息

Racay P, Kaplán P, Lehotský J

机构信息

Comenius University, Jessenius Medical Faculty, Department of Medical Biochemistry, Martin, Slovakia.

出版信息

Gen Physiol Biophys. 1996 Jun;15(3):193-210.

PMID:9076503
Abstract

The intracellular free Ca2+ concentrations show complex fluctuations in time and space in response to a variety of stimuli, and act as a pluripotent signal for many neuronal functions. Activation of cells is associated with Ca2+ influx from the extracellular space through voltage-dependent and/or receptor-operated Ca2+ channels localized on the plasma membrane, and/or by release of Ca2+ from intracellular stores to reach Ca2+ concentrations of up to micromolar levels. During cell relaxation, calcium concentration decreases to resting levels via ATP-driven Ca2+ transport both to the extracellular space and into the intracellular stores. Thus, Ca2+ homeostasis in neuronal cells is maintained by several systems differing by their mechanisms, biochemical characteristics and intracellular localization. Their biochemical properties and physiological importance as well as cellular localization are discussed in this short review.

摘要

细胞内游离钙离子浓度会随着各种刺激在时间和空间上呈现复杂的波动,并作为多种神经元功能的多能信号。细胞激活与钙离子从细胞外空间通过位于质膜上的电压依赖性和/或受体操纵的钙离子通道流入有关,和/或通过从细胞内储存库释放钙离子,使钙离子浓度达到微摩尔水平。在细胞舒张过程中,钙浓度通过ATP驱动的钙离子转运,既向细胞外空间也向细胞内储存库转运,从而降至静息水平。因此,神经元细胞中的钙离子稳态由几种机制、生化特性和细胞内定位不同的系统维持。本简短综述将讨论它们的生化特性、生理重要性以及细胞定位。

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