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用于增强治疗性和报告基因表达的新型双向载体策略。

Novel bidirectional vector strategy for amplification of therapeutic and reporter gene expression.

作者信息

Ray Sunetra, Paulmurugan Ramasamy, Hildebrandt Isabel, Iyer Meera, Wu Lily, Carey Michael, Gambhir Sanjiv S

机构信息

Crump Institute for Molecular Imaging, and Department of Molecular and Medical Pharmacology, UCLA School of Medicine, Los Angeles, CA 90095, USA.

出版信息

Hum Gene Ther. 2004 Jul;15(7):681-90. doi: 10.1089/1043034041361271.

Abstract

Molecular imaging methods have previously been employed to image tissue-specific reporter gene expression by a two-step transcriptional amplification (TSTA) strategy. We have now developed a new bidirectional vector system, based on the TSTA strategy, that can simultaneously amplify expression for both a target gene and a reporter gene, using a relatively weak promoter. We used the synthetic Renilla luciferase (hrl) and firefly luciferase (fl) reporter genes to validate the system in cell cultures and in living mice. When mammalian cells were transiently cotransfected with the GAL4-responsive bidirectional reporter vector and various doses of the activator plasmid encoding the GAL4-VP16 fusion protein, pSV40-GAL4-VP16, a high correlation (r(2) = 0.95) was observed between the expression levels of both reporter genes. Good correlations (r(2) = 0.82 and 0.66, respectively) were also observed in vivo when the transiently transfected cells were implanted subcutaneously in mice or when the two plasmids were delivered by hydrodynamic injection and imaged. This work establishes a novel bidirectional vector approach utilizing the TSTA strategy for both target and reporter gene amplification. This validated approach should prove useful for the development of novel gene therapy vectors, as well as for transgenic models, allowing noninvasive imaging for indirect monitoring and amplification of target gene expression.

摘要

分子成像方法此前已被用于通过两步转录扩增(TSTA)策略对组织特异性报告基因表达进行成像。我们现在基于TSTA策略开发了一种新的双向载体系统,该系统可以使用相对较弱的启动子同时扩增靶基因和报告基因的表达。我们使用合成的海肾荧光素酶(hrl)和萤火虫荧光素酶(fl)报告基因在细胞培养物和活体小鼠中验证该系统。当将GAL4反应性双向报告载体与各种剂量的编码GAL4-VP16融合蛋白的激活质粒pSV40-GAL4-VP16瞬时共转染到哺乳动物细胞中时,观察到两个报告基因的表达水平之间具有高度相关性(r(2) = 0.95)。当将瞬时转染的细胞皮下植入小鼠体内,或者通过流体动力学注射递送这两种质粒并进行成像时,在体内也观察到了良好的相关性(分别为r(2) = 0.82和0.66)。这项工作建立了一种利用TSTA策略进行靶基因和报告基因扩增的新型双向载体方法。这种经过验证的方法对于新型基因治疗载体的开发以及转基因模型应该是有用的,允许进行非侵入性成像以间接监测和扩增靶基因表达。

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