Department of Developmental Biology, Osaka Bioscience Institute, Suita, Osaka 565-0874, Japan.
Biochem Biophys Res Commun. 2010 Feb 12;392(3):317-22. doi: 10.1016/j.bbrc.2010.01.007. Epub 2010 Jan 6.
Crx is a transcription factor which is predominantly expressed in developing and mature photoreceptor cells in the retina, and plays a crucial role in the terminal differentiation of both rods and cones. Crx is one of the earliest-expressed genes specifically in photoreceptor precursors, allowing us to trace photoreceptor precursor cells from embryonic stages to adult stage by visualizing Crx-expressing cells. In the current study, we generated a transgenic mouse line which expresses enhanced green fluorescence protein (EGFP) in the retina driven by the Crx promoter using bacterial artificial chromosome (BAC) transgenesis. EGFP-positive cells were observed in the presumptive photoreceptor layer in the retina at embryonic day 15.5 (E15.5), and continued to be expressed in developing and mature photoreceptor cells up to adult stage. We sorted EGFP-positive photoreceptor precursors at E17.5 using fluorescence-activated cell sorter (FACS), and subsequently performed microarray analysis of the FACS-sorted cells. We observed various photoreceptor genes, especially cone genes, are enriched in the EGFP-positive cells, indicating that embryonic cone photoreceptor precursors are enriched. In addition, we found that most of the EGFP-positive cells were post-mitotic cells. Thus, the transgenic line we established can serve as a useful tool to study both developing and mature photoreceptor cells, including embryonic cone precursors whose analysis has been difficult.
Crx 是一种转录因子,主要在视网膜的发育和成熟感光细胞中表达,在视杆细胞和视锥细胞的终末分化中发挥关键作用。Crx 是感光细胞前体中最早表达的基因之一,使我们能够通过可视化表达 Crx 的细胞来追踪从胚胎期到成年期的感光细胞前体。在本研究中,我们利用细菌人工染色体 (BAC) 转基因技术,在 Crx 启动子的驱动下,在视网膜中生成了一种表达增强型绿色荧光蛋白 (EGFP) 的转基因小鼠系。在胚胎第 15.5 天 (E15.5),可在视网膜的假定感光细胞层观察到 EGFP 阳性细胞,并持续在发育中和成熟的感光细胞中表达至成年期。我们使用荧光激活细胞分选 (FACS) 在 E17.5 分选 EGFP 阳性的感光细胞前体,随后对 FACS 分选的细胞进行微阵列分析。我们观察到各种感光细胞基因,特别是视锥细胞基因,在 EGFP 阳性细胞中富集,表明胚胎视锥细胞前体被富集。此外,我们发现大多数 EGFP 阳性细胞是有丝分裂后细胞。因此,我们建立的转基因系可以作为研究发育中和成熟感光细胞的有用工具,包括分析困难的胚胎视锥前体细胞。