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从歌曲到突触:鸟鸣记忆的分子机制。鸣禽听觉学习的分子机制涉及即时早期基因,包括 zenk 和 arc、ERK/MAPK 途径和突触结合蛋白。

From songs to synapses: molecular mechanisms of birdsong memory. Molecular mechanisms of auditory learning in songbirds involve immediate early genes, including zenk and arc, the ERK/MAPK pathway and synapsins.

机构信息

Behavioral Biology, Department of Biology and Helmholtz Institute, Utrecht University, The Netherlands.

出版信息

Bioessays. 2011 May;33(5):377-85. doi: 10.1002/bies.201000150. Epub 2011 Mar 7.

Abstract

There are remarkable behavioral, neural, and genetic similarities between the way songbirds learn to sing and human infants learn to speak. Furthermore, the brain regions involved in birdsong learning, perception, and production have been identified and characterized in detail. In particular, the caudal medial nidopallium (the avian analog of the mammalian auditory-association cortex) has been found to contain the neural substrate of auditory memory, paving the way for analyses of the underlying molecular mechanisms. Recently, the zebra finch genome was sequenced, and annotated cDNA databases representing over 15,000 unique brain-expressed genes are available, enabling high-throughput gene expression analyses. Here we review the involvement of immediate early genes (e.g. zenk and arc), their downstream targets (e.g. synapsins), and their regulatory signaling pathways (e.g. MAPK/ERK) in songbird memory. We propose that in-depth investigations of zenk- and ERK-dependent cascades will help to further unravel the molecular basis of auditory memory.

摘要

鸣禽学习唱歌和人类婴儿学习说话的方式之间存在显著的行为、神经和遗传相似性。此外,参与鸟类歌唱学习、感知和产生的大脑区域已经被详细地鉴定和描述。特别是,尾侧中脑隔核(鸟类中与哺乳动物听觉联合皮层对应的区域)被发现包含听觉记忆的神经基质,为分析潜在的分子机制铺平了道路。最近,斑胸草雀的基因组被测序,并且有超过 15000 个独特的脑表达基因的 cDNA 数据库被注释,从而实现了高通量的基因表达分析。在这里,我们综述了即时早期基因(如 zenk 和 arc)、它们的下游靶标(如 synapsins)及其调节信号通路(如 MAPK/ERK)在鸟类记忆中的作用。我们提出,对 zenk 和 ERK 依赖性级联反应的深入研究将有助于进一步揭示听觉记忆的分子基础。

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