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PMID: 25400545 已发表 · epublish 英语

A transgenic mouse line for collecting ribosome-bound mRNA using the tetracycline transactivator system.

Frontiers in molecular neuroscience ·第 7 卷 ·2014-11-17

Drane Laurel, Ainsley Joshua A, Mayford Mark R, Reijmers Leon G

摘要

Acquiring the gene expression profiles of specific neuronal cell-types is important for understanding their molecular identities. Genome-wide gene expression profiles of genetically defined cell-types can be acquired by collecting and sequencing mRNA that is bound to epitope-tagged ribosomes (TRAP; translating ribosome affinity purification). Here, we introduce a transgenic mouse model that combines the TRAP technique with the tetracycline transactivator (tTA) system by expressing EGFP-tagged ribosomal protein L10a (EGFP-L10a) under control of the tetracycline response element (tetO-TRAP). This allows both spatial control of EGFP-L10a expression through cell-type specific tTA expression, as well as temporal regulation by inhibiting transgene expression through the administration of doxycycline. We show that crossing tetO-TRAP mice with transgenic mice expressing tTA under the Camk2a promoter (Camk2a-tTA) results in offspring with cell-type specific expression of EGFP-L10a in CA1 pyramidal neurons and medium spiny neurons in the striatum. Co-immunoprecipitation confirmed that EGFP-L10a integrates into a functional ribosomal complex. In addition, collection of ribosome-bound mRNA from the hippocampus yielded the expected enrichment of genes expressed in CA1 pyramidal neurons, as well as a depletion of genes expressed in other hippocampal cell-types. Finally, we show that crossing tetO-TRAP mice with transgenic Fos-tTA mice enables the expression of EGFP-L10a in CA1 pyramidal neurons that are activated during a fear conditioning trial. The tetO-TRAP mouse can be combined with other tTA mouse lines to enable gene expression profiling of a variety of different cell-types.

关键词
CA1 pyramidal neuron Camk2a Fos TRAP tetracycline transactivator
文献信息
期刊
Frontiers in molecular neuroscience
期刊简称
Front Mol Neurosci
发表日期
2014-11-17
收录日期
2014-11-17
更新日期
2016-10-25
语言
英语
国家/地区
Switzerland
NLM ID
101477914
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