Chang M A, Horner J W, Conklin B R, DePinho R A, Bok D, Zack D J
Jules Stein Eye Institute, Department of Neurobiology, Brain Research Institute, University of California, Los Angeles, USA.
Invest Ophthalmol Vis Sci. 2000 Dec;41(13):4281-7.
To develop a system for inducible photoreceptor-specific gene expression in transgenic mice. The tetracycline regulatory system was chosen because it possesses the useful property of direct control of gene expression through use of an exogenous agent, doxycycline, a tetracycline derivative.
Transgenic mice were generated that carried the reverse tetracycline-controlled transactivator under the control of the photoreceptor-specific promoters for rhodopsin and interphotoreceptor retinoid-binding protein. These animals were crossed with transgenic mice carrying the lacZ reporter gene under control of the tetracycline operator cassette, creating doubly transgenic mice. Doxycycline was administered to induce expression of the reporter gene. Reporter assays were then performed to evaluate lacZ expression.
Doxycycline administration led to photoreceptor-specific expression of the lacZ reporter gene in the doubly transgenic mice. X-gal staining was restricted to photoreceptor inner segments and synaptic termini. Induction could be achieved by addition of the drug to the animals' drinking water or by intravitreal injection. Induction was noted within 24 hours of doxcycline administration. Because of variability among animals, there was an approximate correlation, but not a clean dose-response curve relating drug dose to level of reporter expression.
A transgenic system for inducible photoreceptor-specific gene expression has been developed. This system is currently being exploited to study the effects of regulated expression of genes of biological interest.
开发一种在转基因小鼠中诱导光感受器特异性基因表达的系统。选择四环素调控系统是因为它具有通过使用外源性试剂强力霉素(一种四环素衍生物)直接控制基因表达的有用特性。
构建转基因小鼠,使其在视紫红质和光感受器间维生素A结合蛋白的光感受器特异性启动子控制下携带反向四环素控制的反式激活因子。将这些动物与在四环素操纵子盒控制下携带lacZ报告基因的转基因小鼠杂交,产生双转基因小鼠。给予强力霉素以诱导报告基因的表达。然后进行报告基因检测以评估lacZ的表达。
给予强力霉素导致双转基因小鼠中lacZ报告基因的光感受器特异性表达。X-gal染色局限于光感受器内段和突触终末。通过将药物添加到动物饮用水中或玻璃体内注射均可实现诱导。在给予强力霉素后24小时内即可观察到诱导。由于动物个体间存在差异,药物剂量与报告基因表达水平之间存在大致的相关性,但没有清晰的剂量反应曲线。
已开发出一种用于诱导光感受器特异性基因表达的转基因系统。目前正在利用该系统研究具有生物学意义的基因的调控表达的影响。