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即早基因、神经可塑性与记忆。

Immediate-early genes, neuronal plasticity, and memory.

作者信息

Robertson H A

机构信息

Department of Pharmacology, Dalhousie University, Halifax, N.S., Canada.

出版信息

Biochem Cell Biol. 1992 Sep;70(9):729-37. doi: 10.1139/o92-112.

Abstract

The demonstration that the immediate-early gene c-fos is rapidly and transiently expressed in brain following a variety of manipulations has led to intense study of these genes to determine what physiological role they play. The very wide range of stimuli which lead to induction of immediate-early genes (IEGs) in the brain has raised concerns for the specificity of their actions and the suggestion that they might merely be involved in housekeeping functions. On the other hand, there is evidence that these genes may play a role in the transmission of information from cell surface receptors to the genetic material in many instances of neuronal plasticity, including development of seizure susceptibility (kindling), long-term potentiation, drug-induced changes, the phase shift in circadian rhythms, and spreading neuronal depression. In addition to being a putative third (or fourth) messenger involved in transduction of signals to the genetic material, activation of IEGs has proven to be a useful tool for the study of transsynaptic activation of certain neuronal pathways in the brain. Thus, studies on the induction of IEGs are proving to be especially useful in understanding some important functions and properties of the mammalian brain.

摘要

多种操作后即刻早期基因c-fos在脑中迅速且短暂表达的证明,引发了对这些基因的深入研究,以确定它们发挥何种生理作用。导致脑中即刻早期基因(IEGs)诱导的刺激范围非常广泛,这引发了对其作用特异性的担忧,并有人提出它们可能仅仅参与维持细胞基本功能。另一方面,有证据表明,在许多神经元可塑性的情况下,包括癫痫易感性(点燃)的发展、长时程增强、药物诱导的变化、昼夜节律的相位转移以及扩散性抑制,这些基因可能在从细胞表面受体到遗传物质的信息传递中发挥作用。除了作为参与信号转导至遗传物质的假定第三(或第四)信使外,IEGs的激活已被证明是研究脑中某些神经元通路跨突触激活的有用工具。因此,对IEGs诱导的研究在理解哺乳动物脑的一些重要功能和特性方面被证明特别有用。

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