Nordstrom Jeffrey L
Valentis, Inc., 863A Mitten Road, Burlingame, CA 94010, USA.
Steroids. 2003 Nov;68(10-13):1085-94. doi: 10.1016/j.steroids.2003.07.008.
Antiprogestin-controlled gene regulation systems, initially developed by Bert O'Malley and colleagues, are based on the unusual properties of certain truncated progesterone receptor ligand-binding domains (PR-LBDdelta19). These modified PR-LBDs have lost the ability to respond to progestins, but have gained the ability to respond to antiprogestins as agonists, rather than as antagonists. When a modified PR-LBD is joined to specific DNA-binding and transcription activator domains, the resultant chimeric protein functions as an antiprogestin-inducible transcription factor for transgenes linked to promoters with specific DNA-binding sites. Antiprogestin-inducible gene regulation systems have been used to regulate transgene expression in cultured cells, transgenic animals, and for in vivo gene transfer studies using viral- or plasmid-based vectors. We have designed a plasmid-based, muscle-specific GeneSwitch system that is delivered to skeletal muscle by electroporation and provides regulated erythropoietin (EPO) expression in mice and rats in a manner that is dependent on orally administered mifepristone (MFP). Regulation was effective at low doses of MFP and provided regulated biological responses (hematocrit changes) for more than 6 months. This plasmid-based, antiprogestin-inducible EPO/GeneSwitch system has the potential to be a convenient, long-lasting and effective gene-based therapy for the treatment of anemia.
抗孕激素调控基因系统最初由伯特·奥马利及其同事开发,它基于某些截短的孕激素受体配体结合结构域(PR-LBDdelta19)的特殊性质。这些修饰后的PR-LBD失去了对孕激素的反应能力,但获得了作为激动剂而非拮抗剂对抗孕激素作出反应的能力。当一个修饰后的PR-LBD与特定的DNA结合和转录激活结构域相连时,产生的嵌合蛋白就作为一种抗孕激素诱导型转录因子,作用于与具有特定DNA结合位点的启动子相连的转基因。抗孕激素诱导型基因调控系统已被用于调控培养细胞、转基因动物中的转基因表达,以及使用基于病毒或质粒的载体进行体内基因转移研究。我们设计了一种基于质粒的肌肉特异性基因开关系统,通过电穿孔法将其导入骨骼肌,该系统能使小鼠和大鼠中的促红细胞生成素(EPO)表达受到调控,且这种调控依赖于口服米非司酮(MFP)。低剂量的MFP就能有效调控,并且能在超过6个月的时间里实现对生物学反应(血细胞比容变化)的调控。这种基于质粒的、抗孕激素诱导型EPO/基因开关系统有可能成为一种方便、持久且有效的基于基因的贫血治疗方法。