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一种基于牛免疫缺陷病毒的不依赖Rev的合成包装构建体。

A synthetic Rev-independent bovine immunodeficiency virus-based packaging construct.

作者信息

Molina Rene P, Ye Hongqing Q, Brady James, Zhang Jingli, Zimmerman Heather, Kaleko Michael, Luo Tianci

机构信息

Advanced Vision Therapies, Inc., Rockville, MD 20850, USA.

出版信息

Hum Gene Ther. 2004 Sep;15(9):865-77. doi: 10.1089/hum.2004.15.865.

Abstract

Replication competent lentivirus (RCL) has been the major safety concern associated with applications of lentivirus-based gene transfer systems for human gene therapy. Minimization and elimination of overlaps between the packaging and the transfer vector constructs are expected to reduce the potential to generate RCL. We previously developed second- and third-generation bovine immunodeficiency virus (BIV)-based gene transfer systems. However, some sequence homologies between the vector and gag/pol packaging constructs remained. In order to minimize the sequence homologies, we recoded gag/pol with codon usage optimized for expression in human cells in this report. Expression of the recoded gag/pol was Rev/RRE independent. Thus, RRE was eliminated from the packaging construct, thereby removing a 312 bp block of homology. In addition, recoding gag/pol minimized overall homologies between the packaging and transfer vector constructs. Vectors generated by the recoded packaging construct with a four plasmid system had titers greater than 1 x 10(6) transducing units per milliliter, equivalent to those of the earlier generation systems. The vectors were functional in vitro and efficiently transduced rat pigment epithelial cells in vivo. Generation of the synthetic packaging construct provides further advances to the safety of lentiviral vectors for clinical applications.

摘要

具有复制能力的慢病毒(RCL)一直是基于慢病毒的基因转移系统应用于人类基因治疗的主要安全问题。减少和消除包装载体与转移载体构建体之间的重叠有望降低产生RCL的可能性。我们之前开发了基于第二代和第三代牛免疫缺陷病毒(BIV)的基因转移系统。然而,载体与gag/pol包装构建体之间仍存在一些序列同源性。为了尽量减少序列同源性,我们在本报告中用针对人类细胞表达优化的密码子使用方式对gag/pol进行了重新编码。重新编码的gag/pol的表达不依赖于Rev/RRE。因此,RRE从包装构建体中被去除,从而消除了一个312 bp的同源性区域。此外,对gag/pol进行重新编码使包装载体与转移载体构建体之间的整体同源性降至最低。由重新编码的包装构建体与四质粒系统产生的载体滴度大于每毫升1×10(6)转导单位,与早期一代系统相当。这些载体在体外具有功能,并能在体内有效地转导大鼠色素上皮细胞。合成包装构建体的产生为慢病毒载体用于临床应用的安全性提供了进一步的进展。

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