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Construction of Retroviral Vectors with Improved Safety Gene Expression and Versatility

机译:具有改进的安全性基因表达和多功能性的逆转录病毒载体的构建

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摘要

Murine leukemia virus (MLV)-based retroviral vectors are the most frequently used gene delivery vehicles. However, the current vectors are still not fully optimized for gene expression and viral titer, and many genetic and biochemical features of MLV-based vectors are poorly understood. We have previously reported that the retroviral vector MFG, where the gene of interest is expressed as a spliced mRNA, is superior in the level of gene expression with respect to other vectors compared in the study. As one approach to developing improved retroviral vectors, we have systematically performed mutational analysis of the MFG retroviral vector. We demonstrated that the entire gag coding sequence, together with the immediate upstream region, could be deleted without significantly affecting viral packaging or gene expression. To our knowledge, this region is included in all currently available retroviral vectors. In addition, almost the entire U3 region could be replaced with the heterologous human cytomegalovirus immediately-early promoter without deleterious effects. We could also insert internal ribosome entry sites (IRES) and multicloning sites into MFG without adverse effects. Based on these observations, we have constructed a series of new, improved retroviral constructs. These vectors produced viral titers comparable to MFG, expressed high levels of gene expression, and stably transferred genes to the target cells. Our vectors are more convenient to use because of the presence of multicloning sites and IRESs, and they are also more versatile because they can be readily converted to various applications. Our results have general implications regarding the design and development of improved retroviral vectors for gene therapy.
机译:基于鼠白血病病毒(MLV)的逆转录病毒载体是最常用的基因传递载体。但是,当前的载体仍没有针对基因表达和病毒滴度进行完全优化,基于MLV的载体的许多遗传和生化特征还知之甚少。我们以前曾报道过,逆转录病毒载体MFG(其中感兴趣的基因以剪接的mRNA形式表达)在基因表达水平上优于本研究中的其他载体。作为开发改进的逆转录病毒载体的一种方法,我们系统地对MFG逆转录病毒载体进行了突变分析。我们证明了整个gag编码序列以及直接上游区域,可以删除而不会显着影响病毒包装或基因表达。据我们所知,该区域包括在所有当前可用的逆转录病毒载体中。另外,几乎整个U3区域可以被异源人类巨细胞病毒立即早期启动子替代,而没有有害作用。我们还可以将内部核糖体进入位点(IRES)和多克隆位点插入MFG,而不会产生不利影响。基于这些观察,我们构建了一系列新的,改进的逆转录病毒构建体。这些载体产生的病毒效价与MFG相当,表达高水平的基因表达,并稳定地将基因转移至靶细胞。由于存在多克隆位点和IRES,我们的载体使用起来更方便,并且它们也更通用,因为它们可以轻松转换为各种应用。我们的结果对用于基因治疗的改良逆转录病毒载体的设计和开发具有一般意义。

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