Department of Ophthalmology, Gavin Herbert Eye Institute, University of California, Irvine, Irvine, California, USA.
Department of Pharmacology, School of Medicine, Case Western Reserve University, Cleveland, Ohio, USA.
JCI Insight. 2021 May 10;6(9):146604. doi: 10.1172/jci.insight.146604.
The retinal pigment epithelium (RPE) provides vital metabolic support for retinal photoreceptor cells and is an important player in numerous retinal diseases. Gene manipulation in mice using the Cre-LoxP system is an invaluable tool for studying the genetic basis of these retinal diseases. However, existing RPE-targeted Cre mouse lines have critical limitations that restrict their reliability for studies of disease pathogenesis and treatment, including mosaic Cre expression, inducer-independent activity, off-target Cre expression, and intrinsic toxicity. Here, we report the generation and characterization of a knockin mouse line in which a P2A-CreERT2 coding sequence is fused with the native RPE-specific 65 kDa protein (Rpe65) gene for cotranslational expression of CreERT2. Cre+/- mice were able to recombine a stringent Cre reporter allele with more than 99% efficiency and absolute RPE specificity upon tamoxifen induction at both postnatal days (PD) 21 and 50. Tamoxifen-independent Cre activity was negligible at PD64. Moreover, tamoxifen-treated Cre+/- mice displayed no signs of structural or functional retinal pathology up to 4 months of age. Despite weak RPE65 expression from the knockin allele, visual cycle function was normal in Cre+/- mice. These data indicate that Rpe65CreERT2 mice are well suited for studies of gene function and pathophysiology in the RPE.
视网膜色素上皮 (RPE) 为视网膜光感受器细胞提供重要的代谢支持,是许多视网膜疾病中的重要参与者。使用 Cre-LoxP 系统对小鼠进行基因操作是研究这些视网膜疾病遗传基础的宝贵工具。然而,现有的 RPE 靶向 Cre 小鼠品系存在关键限制,限制了它们在疾病发病机制和治疗研究中的可靠性,包括镶嵌 Cre 表达、诱导剂非依赖性活性、脱靶 Cre 表达和内在毒性。在这里,我们报告了一种敲入小鼠品系的产生和特征,其中 P2A-CreERT2 编码序列与天然 RPE 特异性 65 kDa 蛋白 (Rpe65) 基因融合,用于 CreERT2 的共翻译表达。在出生后第 21 天和第 50 天用他莫昔芬诱导时,Cre+/- 小鼠能够以超过 99%的效率和绝对的 RPE 特异性重组严格的 Cre 报告基因等位基因。在 PD64 时,他莫昔芬非依赖性 Cre 活性可忽略不计。此外,在 4 个月大之前,用他莫昔芬处理的 Cre+/- 小鼠没有表现出结构或功能上的视网膜病理迹象。尽管敲入等位基因的 RPE65 表达较弱,但 Cre+/- 小鼠的视觉周期功能正常。这些数据表明,Rpe65CreERT2 小鼠非常适合研究 RPE 中的基因功能和病理生理学。