基于Cre/loxP-EBNA-1/oriP的HIV-1依赖核酶载体的长期转基因表达和抑制HIV-1复制:在HIV-1基因治疗中的应用

Takashi Nagawa, Yuichiro Habu, Norihiko Matsumoto, Naoko Miyano-Kurosaki, Hiroshi Takaku
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引用次数: 0

摘要

核糖酶对靶mRNA的裂解正被用作核酸治疗中基因沉默的一种手段。我们之前基于Cre-loxP技术建立了HIV-1依赖性核酶表达载体系统,其中LTR-gag-p17启动子作为用于急性HIV-1感染的分子开关。同时表达Cre蛋白和loxP同源重组诱导了高水平的hiv -1复制抑制,但核酶的表达是短暂的。在本研究中,我们通过将eb病毒(EBV)的EBNA-1和oriP基因插入到载体中,克服了这一限制。将该质粒导入HeLa CD4(+)细胞后,我们观察到EGFP报告基因和核酶的长期表达。此外,HIV-1在转染细胞中的长期复制受到抑制。这些数据表明,含有EBNA-1/oriP序列的HIV-1依赖性核酶表达载体将成为HIV-1基因治疗应用的有用工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Long-term transgene expression and inhibition of HIV-1 replication by a Cre/loxP-EBNA-1/oriP HIV-1-dependent ribozyme vector: Applications for HIV-1 gene therapy.

Long-term transgene expression and inhibition of HIV-1 replication by a Cre/loxP-EBNA-1/oriP HIV-1-dependent ribozyme vector: Applications for HIV-1 gene therapy.

Long-term transgene expression and inhibition of HIV-1 replication by a Cre/loxP-EBNA-1/oriP HIV-1-dependent ribozyme vector: Applications for HIV-1 gene therapy.

Long-term transgene expression and inhibition of HIV-1 replication by a Cre/loxP-EBNA-1/oriP HIV-1-dependent ribozyme vector: Applications for HIV-1 gene therapy.

The cleavage of target mRNA by ribozymes is being exploited as a means of gene silencing in nucleic-acid-based therapies. We previously established an HIV-1-dependent ribozyme-expression vector system, based on Cre-loxP technology with an LTR-gag-p17 promoter as a molecular switch for use in acute HIV-1 infection. The simultaneous expression of the Cre protein and loxP homologous recombination induced a high level of HIV-1-replication inhibition, but ribozyme expression was transient. In the current study, we overcame this limitation by inserting EBNA-1 and oriP genes from the Epstein-Barr virus (EBV) into the vector. When this plasmid was introduced into HeLa CD4(+) cells, we observed long-term expression of both the EGFP reporter gene and the ribozyme. Moreover, HIV-1 replication was inhibited in the long-term in transfected cells. These data suggest that the HIV-1-dependent ribozyme-expression vector containing EBNA-1/oriP sequences would be a useful tool in HIV-1 gene therapy applications.

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