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了解mRNA运输在记忆中的重要性。

Understanding the importance of mRNA transport in memory.

作者信息

Sánchez-Carbente María Del Rayo, Desgroseillers Luc

机构信息

Département de Biochimie et Physiologie, Université de Montréal, Montréal, QC H3C 3J7, Canada.

出版信息

Prog Brain Res. 2008;169:41-58. doi: 10.1016/S0079-6123(07)00003-9.

Abstract

RNA localization is an important mechanism to sort proteins to specific subcellular domains. In neurons, several mRNAs are localized in dendrites and their presence allows autonomous control of local translation in response to stimulation of specific synapses. Active constitutive and activity-induced mechanisms of mRNA transport have been described that represent critical steps in the establishment and maintenance of synaptic plasticity. In recent years, the molecular composition of different transporting units has been reported and the identification of proteins and mRNAs in these RNA granules contributes to our understanding of the key steps that regulate mRNA transport and translation. Although RNA granules are heterogeneous, several proteins are common to different RNA granule populations, suggesting that they play important roles in the formation of the granules and/or their regulation during transport and translation. About 1-4% of the neuron transcriptome is found in RNA granules and the characterization of bound mRNAs reveal that they encode proteins of the cytoskeleton, the translation machinery, vesicle trafficking, and/or proteins involved in synaptic plasticity. Non-coding RNAs and microRNAs are also found in dendrites and likely regulate RNA translation. These mechanisms of mRNA transport and local translation are critical for synaptic plasticity mediated by activity or experience and memory.

摘要

RNA定位是将蛋白质分选到特定亚细胞区域的重要机制。在神经元中,几种mRNA定位于树突,它们的存在使得在特定突触受到刺激时能够自主控制局部翻译。已经描述了mRNA运输的主动组成型和活性诱导机制,这些机制是突触可塑性建立和维持的关键步骤。近年来,已经报道了不同运输单元的分子组成,并且对这些RNA颗粒中蛋白质和mRNA的鉴定有助于我们理解调节mRNA运输和翻译的关键步骤。尽管RNA颗粒是异质性的,但几种蛋白质在不同的RNA颗粒群体中是共有的,这表明它们在颗粒形成和/或在运输和翻译过程中的调节中发挥重要作用。约1-4%的神经元转录组存在于RNA颗粒中,对结合的mRNA的表征表明它们编码细胞骨架、翻译机制、囊泡运输和/或参与突触可塑性的蛋白质。非编码RNA和微小RNA也存在于树突中,可能调节RNA翻译。这些mRNA运输和局部翻译机制对于由活动或经验以及记忆介导的突触可塑性至关重要。

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