Allen Institute for Brain Science, Seattle, Washington, USA.
Nat Neurosci. 2010 Jan;13(1):133-40. doi: 10.1038/nn.2467. Epub 2009 Dec 20.
The Cre/lox system is widely used in mice to achieve cell-type-specific gene expression. However, a strong and universally responding system to express genes under Cre control is still lacking. We have generated a set of Cre reporter mice with strong, ubiquitous expression of fluorescent proteins of different spectra. The robust native fluorescence of these reporters enables direct visualization of fine dendritic structures and axonal projections of the labeled neurons, which is useful in mapping neuronal circuitry, imaging and tracking specific cell populations in vivo. Using these reporters and a high-throughput in situ hybridization platform, we are systematically profiling Cre-directed gene expression throughout the mouse brain in several Cre-driver lines, including new Cre lines targeting different cell types in the cortex. Our expression data are displayed in a public online database to help researchers assess the utility of various Cre-driver lines for cell-type-specific genetic manipulation.
Cre/lox 系统广泛应用于小鼠中以实现细胞类型特异性基因表达。然而,仍然缺乏一种能够在 Cre 控制下普遍表达基因的强而通用的系统。我们已经生成了一组 Cre 报告小鼠,它们具有不同光谱的荧光蛋白的强、普遍表达。这些报告者的强大的固有荧光使得能够直接可视化标记神经元的精细树突结构和轴突投射,这在映射神经元回路、在体成像和跟踪特定细胞群体方面非常有用。使用这些报告者和高通量原位杂交平台,我们正在对几种 Cre 驱动线中的小鼠大脑中的 Cre 指导的基因表达进行系统分析,包括针对皮质中不同细胞类型的新 Cre 线。我们的表达数据显示在一个公共在线数据库中,以帮助研究人员评估各种 Cre 驱动线在细胞类型特异性遗传操作中的实用性。