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利用 floxed 雄激素受体探索 Nestin-Cre 转基因小鼠中的种系重组。

Exploring germline recombination in Nestin-Cre transgenic mice using floxed androgen receptor.

机构信息

Florey Institute of Neuroscience and Mental Health, University of Melbourne, Parkville, Victoria, Australia.

Perron Institute for Neurological and Translational Science, Queen Elizabeth Medical Centre, Nedlands, Western Australia, Australia.

出版信息

Genesis. 2020 Nov;58(10-11):e23390. doi: 10.1002/dvg.23390. Epub 2020 Aug 3.

DOI:10.1002/dvg.23390
PMID:32744751
Abstract

The Cre-loxP strategy for tissue selective gene deletion has become a widely employed tool in neuroscience research. The validity of these models is largely underpinned by the temporal and spatial selectivity of recombinase expression under the promoter of the Cre driver line. Ectopic Cre-recombinase expression gives rise to off-target effects which can confound results and is especially detrimental if this occurs in germline cells. The Nestin-Cre transgenic mouse is broadly used for selective gene deletion in neurons of the central and peripheral nervous systems. Here we have crossed this mouse with a floxed androgen receptor (AR) transgenic to generate double transgenic neuronal ARKO mice (AR ::NesCre) to study germline deletion in male and female transgenic breeders. In male AR ::NesCre breeders, a null AR allele was passed on to 86% of progeny regardless of the inheritance of the NesCre transgene. In female AR ::NesCre breeders, a null AR allele was passed on to 100% of progeny where AR was expected to be transmitted. This surprisingly high incidence of germline recombination in the Nestin-Cre driver line warrants caution in devising suitable breeding strategies, consideration of accurate genotyping approaches and highlights the need for thorough characterization of tissue-specific gene deletion in this model.

摘要

Cre-loxP 策略已成为神经科学研究中广泛应用的组织选择性基因缺失工具。这些模型的有效性在很大程度上取决于 Cre 驱动系启动子下重组酶表达的时空选择性。异位 Cre 重组酶表达会产生脱靶效应,从而混淆结果,如果这种情况发生在生殖细胞中,尤其有害。Nestin-Cre 转基因小鼠广泛用于中枢和周围神经系统神经元的选择性基因缺失。在这里,我们将这种小鼠与 floxed 雄激素受体 (AR) 转基因小鼠杂交,生成了双转基因神经元 ARKO 小鼠 (AR :: NesCre),以研究雄性和雌性转基因种鼠的生殖系缺失。在雄性 AR :: NesCre 种鼠中,无论 NesCre 转基因的遗传情况如何,86%的后代都传递了一个缺失的 AR 等位基因。在雌性 AR :: NesCre 种鼠中,100%的预期传递 AR 的后代都传递了一个缺失的 AR 等位基因。Nestin-Cre 驱动系中这种生殖系重组的惊人高发生率在设计合适的繁殖策略时需要谨慎,需要考虑准确的基因分型方法,并强调需要对该模型中的组织特异性基因缺失进行彻底的特征描述。

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