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小脑发育转录组数据库(CDT-DB):小鼠小脑出生后发育过程中时空基因表达的剖析

Cerebellar development transcriptome database (CDT-DB): profiling of spatio-temporal gene expression during the postnatal development of mouse cerebellum.

作者信息

Sato Akira, Sekine Yukiko, Saruta Chihiro, Nishibe Hirozumi, Morita Noriyuki, Sato Yumi, Sadakata Tetsushi, Shinoda Yo, Kojima Toshio, Furuichi Teiichi

机构信息

Laboratory of Molecular Neurogenesis, RIKEN Brain Science Institute, Wako, Saitama 351-0198, Japan.

出版信息

Neural Netw. 2008 Oct;21(8):1056-69. doi: 10.1016/j.neunet.2008.05.004. Epub 2008 Jun 4.

Abstract

A large amount of genetic information is devoted to brain development and functioning. The neural circuit of the mouse cerebellum develops through a series of cellular and morphological events (including neuronal proliferation and migration, axogenesis, dendritogenesis, synaptogenesis and myelination) all within three weeks of birth. All of these events are controlled by specific gene groups, whose temporal and spatial expression profiles must be encoded in the genome. To understand the genetic basis underlying cerebellar circuit development, we analyzed gene expression (transcriptome) during the developmental stages on a genome-wide basis. Spatio-temporal gene expression data were collected using in situ hybridization for spatial (cellular and regional) resolution and fluorescence differential display, GeneChip, microarray and RT-PCR for temporal (developmental time series) resolution, and were annotated using Gene Ontology (controlled terminology for genes and gene products) and anatomical context (cerebellar cell types and circuit structures). The annotated experimental data were integrated into a knowledge resource database, the Cerebellar Development Transcriptome Database (CDT-DB http://www.cdtdb.brain.riken.jp), with seamless links to the relevant information at various bioinformatics database websites. The CDT-DB not only provides a unique informatics tool for mining both spatial and temporal pattern information on gene expression in developing mouse brains, but also opens up opportunities to elucidate the transcriptome for cerebellar development.

摘要

大量的遗传信息用于大脑的发育和功能。小鼠小脑的神经回路在出生后的三周内通过一系列细胞和形态学事件(包括神经元增殖和迁移、轴突发生、树突发生、突触发生和髓鞘形成)发育而成。所有这些事件都由特定的基因组控制,其时空表达谱必须编码在基因组中。为了理解小脑回路发育的遗传基础,我们在全基因组范围内分析了发育阶段的基因表达(转录组)。使用原位杂交获取空间(细胞和区域)分辨率的时空基因表达数据,使用荧光差异显示、基因芯片、微阵列和逆转录聚合酶链反应获取时间(发育时间序列)分辨率的数据,并使用基因本体论(基因和基因产物的受控术语)和解剖学背景(小脑细胞类型和回路结构)进行注释。注释后的实验数据被整合到一个知识资源数据库——小脑发育转录组数据库(CDT-DB,http://www.cdtdb.brain.riken.jp)中,该数据库与各个生物信息学数据库网站的相关信息有无缝链接。CDT-DB不仅提供了一个独特的信息学工具,用于挖掘发育中小鼠大脑中基因表达的时空模式信息,还为阐明小脑发育的转录组提供了机会。

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