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Promoter Cre‐Specific Genotyping Assays for Authentication of Cre‐Driver Mouse Lines

机译:用于Cre-Driver小鼠品系鉴定的启动子Cre特定基因分型分析

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The Cre‐LoxP system gene knockout (KO) technology provides cell‐ and time‐specificity of gene ablation to investigate cell‐autonomous gene function in vivo , and is paramount for understanding the function of genes involved in bone development, remodeling, and repair. This approach permits gene ablation in a cell‐ or tissue‐specific, differentiation stage‐specific, and inducible manner, thanks to the use of well‐chosen promoters that drive expression of the Cre recombinase in selected cells/tissues. The generation of these powerful tools has led to the expansion of Cre mouse lines available to the research community, which are often shared within and between laboratories. Although convenient and commonly used, genotyping these Cre lines with a generic set of primers that amplifies the Cre transgene does not distinguish between various Cre‐deleter lines. This practice poses the significant risk of mistakenly swapping Cre lineages, as laboratories often host and handle several lines at a time and utilize multiple lines per project. In line with the NIH‐led effort to promote authentication of biological reagents and increase scientific rigor, we report here strategies for designing appropriate sets of primers able to discriminate some of most widely used Cre‐deleter mouse lines in the field of bone biology, and the validation of 24 of them.
机译:Cre‐LoxP系统基因敲除(KO)技术提供了基因消融的细胞和时间特异性,以研究体内细胞自主基因的功能,并且对于了解参与骨骼发育,重塑和修复的基因的功能至关重要。由于使用了精心挑选的启动子来驱动Cre重组酶在所选细胞/组织中的表达,这种方法允许以细胞或组织特异性,分化阶段特异性和可诱导的方式进行基因消融。这些功能强大的工具的产生导致研究社区可使用的Cre鼠标系列的扩展,这些鼠标系列通常在实验室内部和实验室之间共享。尽管很方便且通常使用,但使用扩增Cre转基因的通用引物对这些Cre系进行基因分型并不能区分各种Cre-deleter系。这种做法带来了错误交换Cre血统的巨大风险,因为实验室经常一次托管和处理多条线,并且每个项目使用多条线。与美国国立卫生研究院(NIH)为促进生物试剂认证和提高科学严谨性所做的努力相一致,我们在此报告了设计适当的引物组的策略,这些引物组能够区分骨骼生物学领域中最广泛使用的Cre-deleter小鼠系,以及其中24个的验证。

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