Fishman G I, Kaplan M L, Buttrick P M
Department of Medicine, Albert Einstein College of Medicine, Bronx, New York 10461.
J Clin Invest. 1994 Apr;93(4):1864-8. doi: 10.1172/JCI117174.
Tight regulation of foreign genes expressed in vivo would facilitate studies of many biologic processes and would be useful for gene transfer-based therapies. To test the ability of a tetracycline-regulated gene expression system to function in vivo, we directly injected chimeric tet repressor-VP16 transactivator expression plasmids and luciferase target genes into the hearts of adult rats. Cardiac luciferase activity increased over two orders of magnitude in response to small changes in input tetracycline-controlled transactivator DNA. Transactivation was repressed to background levels by subtherapeutic concentrations of tetracycline in a dose-dependent manner. Target gene expression could be rapidly and reversibly controlled by manipulating antibiotic administration. This system may be particularly useful for in vivo studies of gene function or gene therapies where the timing or extent of expression are critical variables.
对体内表达的外源基因进行严格调控将有助于许多生物学过程的研究,并且对基于基因转移的治疗方法也很有用。为了测试四环素调控基因表达系统在体内发挥功能的能力,我们将嵌合的四环素阻遏物-VP16反式激活因子表达质粒和荧光素酶靶基因直接注射到成年大鼠的心脏中。响应输入的四环素控制的反式激活因子DNA的微小变化,心脏荧光素酶活性增加了两个数量级以上。亚治疗浓度的四环素以剂量依赖的方式将反式激活抑制到背景水平。通过控制抗生素的给药,可以快速且可逆地控制靶基因的表达。该系统对于基因功能的体内研究或基因治疗可能特别有用,在这些研究或治疗中,表达的时间或程度是关键变量。