Lu Qi, Ivanova Elena, Ganjawala Tushar H, Pan Zhuo-Hua
Department of Ophthalmology and Anatomy & Cell Biology, Wayne State University School of Medicine, Detroit, MI, USA.
Mol Vis. 2013 Jun 12;19:1310-20. Print 2013.
Retinal bipolar cells, comprising multiple types, play an essential role in segregating visual information into multiple parallel pathways in the retina. The ability to manipulate gene expression in specific bipolar cell type(s) in the retina is important for understanding the molecular basis of their normal physiological functions and diseases/disorders. The Cre/LoxP recombination system has become an important tool for allowing gene manipulation in vivo, especially with the increasing availability of cell- and tissue-specific Cre transgenic mouse lines. Detailed in vivo examination of the Cre/LoxP recombination efficiency and the transgene expression patterns for cell- and tissue-specific Cre transgenic mouse lines is essential for evaluating their utility. In this study, we investigated the Cre-mediated recombination efficiency and transgene expression patterns of retinal bipolar cell-expressing Cre transgenic lines by crossing with a Cre reporter mouse line and through Cre-dependent recombinant adeno-associated virus (rAAV) vector-mediated transgene delivery.
Three retinal bipolar cell-expressing Cre-transgenic mouse lines, 5-HTR2a-cre, Pcp2-cre, and Chx10-cre, were crossed with a strong Cre reporter mouse line that expresses a red fluorescent protein variant, tdTomato. rAAV2 vectors carrying a double-floxed inverted open-reading frame sequence encoding channelrhodopsin-2-mCherry (ChR2-mCherry) driven by a ubiquitous neuronal EF1α or a ubiquitous CMV promoter with a rAAV2 capsid mutation (Y444F) were injected into the intravitreal space of the eyes. Immunohistochemistry using retinal bipolar cell type-specific markers was performed to examine Cre-mediated recombination efficiency and the transgene expression patterns in bipolar cells in retinal whole mounts and vertical sections.
For the 5-HTR2a-cre and Pcp2-cre mouse lines, the expression pattern of the Cre-mediated recombination by crossing the reporter line largely resembled the expression pattern of Cre. The bipolar cells showing Cre-mediated recombination in the 5-HTR2a-cre line and the Pcp2-cre line were predominantly type 4 cone bipolar cells and rod bipolar cells, respectively. For the Chx10-cre mouse line, the expression pattern of the Cre-mediated recombination by crossing the reporter line was different from that of Cre. The Cre-mediated transgene expression in retinal bipolar cells in the Chx10-cre line was not observed by crossing with the reporter mouse line but through Cre-dependent rAAV vector delivery. A rAAV2 vector with the combination of a CMV promoter and the Y444F capsid mutation achieved Cre-dependent transgene expression in retinal bipolar cells.
The retinal bipolar cell-expressing Cre-transgenic lines and the Cre-dependent rAAV vector reported in this study could be valuable tools for gene targeting and manipulation in retinal bipolar cells in mice.
视网膜双极细胞包含多种类型,在将视觉信息分离为视网膜中的多条平行通路方面发挥着重要作用。在视网膜中特定双极细胞类型中操纵基因表达的能力对于理解其正常生理功能以及疾病/病症的分子基础至关重要。Cre/LoxP重组系统已成为体内基因操纵的重要工具,尤其是随着细胞和组织特异性Cre转基因小鼠品系的可用性不断增加。详细体内检测细胞和组织特异性Cre转基因小鼠品系的Cre/LoxP重组效率和转基因表达模式对于评估其效用至关重要。在本研究中,我们通过与Cre报告基因小鼠品系杂交以及通过Cre依赖性重组腺相关病毒(rAAV)载体介导的转基因递送,研究了表达视网膜双极细胞的Cre转基因品系的Cre介导的重组效率和转基因表达模式。
将三种表达视网膜双极细胞的Cre转基因小鼠品系,即5-HTR2a-cre、Pcp2-cre和Chx10-cre,与表达红色荧光蛋白变体tdTomato的强Cre报告基因小鼠品系杂交。将携带由普遍存在的神经元EF1α或具有rAAV2衣壳突变(Y444F)的普遍存在的CMV启动子驱动的编码视紫红质-2-樱桃红(ChR2-樱桃红)的双loxed反向开放阅读框序列的rAAV2载体注射到眼睛的玻璃体内。使用视网膜双极细胞类型特异性标记物进行免疫组织化学,以检查视网膜全层和垂直切片中双极细胞的Cre介导的重组效率和转基因表达模式。
对于5-HTR2a-cre和Pcp2-cre小鼠品系,通过与报告基因品系杂交的Cre介导的重组表达模式在很大程度上类似于Cre的表达模式。在5-HTR2a-cre品系和Pcp2-cre品系中显示Cre介导的重组的双极细胞分别主要是4型视锥双极细胞和视杆双极细胞。对于Chx10-cre小鼠品系,通过与报告基因品系杂交的Cre介导的重组表达模式与Cre的不同。通过与报告基因小鼠品系杂交未观察到Chx10-cre品系视网膜双极细胞中的Cre介导的转基因表达,而是通过Cre依赖性rAAV载体递送观察到了这种表达。具有CMV启动子和Y444F衣壳突变组合的rAAV2载体在视网膜双极细胞中实现了Cre依赖性转基因表达。
本研究中报道的表达视网膜双极细胞的Cre转基因品系和Cre依赖性rAAV载体可能是小鼠视网膜双极细胞基因靶向和操纵的有价值工具。