首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >An efficient deletion mutant packaging system for defective herpes simplex virus vectors: potential applications to human gene therapy and neuronal physiology.
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An efficient deletion mutant packaging system for defective herpes simplex virus vectors: potential applications to human gene therapy and neuronal physiology.

机译:缺陷型单纯疱疹病毒载体的有效缺失突变包装系统:在人类基因治疗和神经元生理学中的潜在应用。

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摘要

We have previously described a defective herpes simplex virus (HSV-1) vector system that permits the introduction of virtually any gene into nonmitotic cells. pHSVlac, the prototype vector, stably expresses Escherichia coli beta-galactosidase from a constitutive promoter in many human cell lines, in cultured rat neurons from throughout the nervous system, and in cells in the adult rat brain. HSV-1 vectors expressing other genes may prove useful for studying neuronal physiology or performing human gene therapy for neurological diseases, such as Parkinson disease or brain tumors. A HSV-1 temperature-sensitive (ts) mutant, ts K, has been used as helper virus; ts mutants revert to wild type. In contrast, HSV-1 deletion mutants essentially cannot revert to wild type; therefore, use of a deletion mutant as helper virus might permit human gene therapy with HSV-1 vectors. We now report an efficient packaging system for HSV-1 vectors using a deletion mutant, D30EBA, as helper virus; virus is grown on the complementing cell line M64A. pHSVlac virus prepared using the deletion mutant packaging system stably expresses beta-galactosidase in cultured rat sympathetic neurons and glia. Both D30EBA and ts K contain a mutation in the IE3 gene of HSV-1 strain 17 and have the same phenotype; therefore, changing the helper virus from ts K to D30EBA does not alter the host range or other properties of the HSV-1 vector system.
机译:先前我们已经描述了一种有缺陷的单纯疱疹病毒(HSV-1)载体系统,该系统允许将几乎任何基因引入非有丝分裂细胞中。 pHSVlac(原型载体)在许多人细胞系,整个神经系统中培养的大鼠神经元以及成年大鼠脑中的细胞中,从组成型启动子稳定表达大肠杆菌β-半乳糖苷酶。表达其他基因的HSV-1载体可用于研究神经元生理或对人类神经疾病(如帕金森氏病或脑瘤)进行人类基因治疗。 HSV-1温度敏感(ts)突变体ts K已被用作辅助病毒; ts突变体恢复为野生型。相比之下,HSV-1缺失突变体基本上不能恢复为野生型。因此,使用缺失突变体作为辅助病毒可能允许使用HSV-1载体进行人类基因治疗。我们现在报告使用缺失突变体D30EBA作为辅助病毒的HSV-1载体的有效包装系统;病毒在互补细胞系M64A上生长。使用缺失突变包装系统制备的pHSVlac病毒在培养的大鼠交感神经元和神经胶质细胞中稳定表达β-半乳糖苷酶。 D30EBA和ts K均在HSV-1株17的IE3基因中包含一个突变,并且具有相同的表型。因此,将辅助病毒从ts K更改为D30EBA不会改变HSV-1载体系统的宿主范围或其他属性。

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