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携带缩短的CFTR基因的腺相关病毒载体对CFTR功能的高效表达。

Efficient expression of CFTR function with adeno-associated virus vectors that carry shortened CFTR genes.

作者信息

Zhang L, Wang D, Fischer H, Fan P D, Widdicombe J H, Kan Y W, Dong J Y

机构信息

Gene Therapy Core Center for Cystic Fibrosis and Genetic Diseases and Department of Laboratory Medicine, University of California, San Francisco, CA 94143, USA.

出版信息

Proc Natl Acad Sci U S A. 1998 Aug 18;95(17):10158-63. doi: 10.1073/pnas.95.17.10158.

Abstract

Adeno-associated virus (AAV)-based vectors have been shown to be effective in transferring the cystic fibrosis gene (CFTR) into airway epithelial cells in animal models and in patients. However, the level of CFTR gene expression has been low because the vector cannot accommodate the CFTR gene together with a promoter. In this study, we described a strategy to reduce the size of the CFTR cDNA to allow the incorporation of an effective promoter with the CFTR gene into AAV vectors. We engineered and tested 20 CFTR mini-genes containing deletions that were targeted to regions that may contain nonessential sequences. Functional analyses showed that four of the shortened CFTRs (one with combined deletions) retained the function and the characteristics of a wild-type CFTR, as measured by open probability, time voltage dependence, and regulation by cAMP. By using an AAV vector with a P5 promoter, we transduced these short forms of CFTR genes into target cells and demonstrated high levels of CFTR expression. We also demonstrated that smaller AAV/CFTR vectors with a P5 promoter expressed the CFTR gene more efficiently than larger vectors or a vector in which CFTR gene was expressed from the AAV inverted terminal repeat sequence. The CFTR mini-gene with combined deletions was packaged into AAV virions more efficiently, generated higher titers of transducing virions, and more effectively transferred CFTR function into target cells. These new vectors should circumvent the limitations of AAV vector for CFTR expression. Our strategy also may be applicable to other genes, the sizes of which exceed the packaging limit of an AAV vector.

摘要

在动物模型和患者中,基于腺相关病毒(AAV)的载体已被证明能有效地将囊性纤维化基因(CFTR)导入气道上皮细胞。然而,CFTR基因的表达水平一直较低,因为该载体无法将CFTR基因与启动子一起容纳。在本研究中,我们描述了一种策略,即减小CFTR cDNA的大小,以便将一个有效的启动子与CFTR基因一起整合到AAV载体中。我们构建并测试了20个CFTR小基因,这些小基因含有针对可能包含非必需序列区域的缺失。功能分析表明, 四个缩短的CFTR(一个带有联合缺失)保留了野生型CFTR的功能和特性,这通过开放概率、时间电压依赖性和cAMP调节来衡量。通过使用带有P5启动子的AAV载体,我们将这些短形式的CFTR基因转导到靶细胞中,并证明了高水平的CFTR表达。我们还证明,带有P5启动子的较小AAV/CFTR载体比更大的载体或CFTR基因从AAV反向末端重复序列表达的载体更有效地表达CFTR基因。带有联合缺失的CFTR小基因更有效地包装到AAV病毒粒子中,产生更高滴度的转导病毒粒子,并更有效地将CFTR功能转移到靶细胞中。这些新载体应能克服AAV载体在CFTR表达方面的局限性。我们的策略也可能适用于其他大小超过AAV载体包装限制的基因。

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