首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >Optimized lentiviral vector design improves titer and transgene expression of vectors containing the chicken beta-globin locus HS4 insulator element.
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Optimized lentiviral vector design improves titer and transgene expression of vectors containing the chicken beta-globin locus HS4 insulator element.

机译:优化的慢病毒载体设计可改善含有鸡β-珠蛋白基因座HS4绝缘子元件的载体的滴度和转基因表达。

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摘要

Hematopoietic cell gene therapy using retroviral vectors has achieved success in clinical trials. However, safety issues regarding vector insertional mutagenesis have emerged. In two different trials, vector insertion resulted in the transcriptional activation of proto-oncogenes. One strategy for potentially diminishing vector insertional mutagenesis is through the use of self-inactivating lentiviral vectors containing the 1.2-kb insulator element derived from the chicken beta-globin locus. However, use of this element can dramatically decrease both vector titer and transgene expression, thereby compromising its practical use. Here, we studied lentiviral vectors containing either the full-length 1.2-kb insulator or the smaller 0.25-kb core element in both orientations in the partially deleted long-terminal repeat. We show that use of the 0.25-kb core insulator rescued vector titer by alleviating a postentry block to reverse transcription associated with the 1.2-kb element. In addition, in an orientation-dependent manner, the 0.25-kb core element significantly increased transgene expression from an internal promoter due to improved transcriptional termination. This element also demonstrated barrier activity, reducing variability of expression due to position effects. As it is known that the 0.25-kb core insulator has enhancer-blocking activity, this particular insulated lentiviral vector design may be useful for clinical application.
机译:使用逆转录病毒载体进行造血细胞基因治疗已在临床试验中取得成功。但是,出现了关于载体插入诱变的安全性问题。在两项不同的试验中,载体插入导致原癌基因的转录激活。潜在减少载体插入诱变的一种策略是通过使用自灭活的慢病毒载体,该载体包含衍生自鸡β-珠蛋白基因座的1.2 kb绝缘子。然而,使用该元件可显着降低载体滴度和转基因表达,从而损害其实际应用。在这里,我们研究了慢病毒载体,该载体在部分缺失的长末端重复序列的两个方向上均包含全长1.2-kb的绝缘子或较小的0.25-kb的核心元件。我们显示通过减轻后进入区来逆转与1.2-kb元素相关的转录,使用0.25-kb核心绝缘子拯救了载体效价。另外,由于改善的转录终止,0.25-kb核心元件以方向依赖性方式显着增加了来自内部启动子的转基因表达。该元素还显示出屏障活性,减少了由于位置效应引起的表达变异。众所周知,0.25kb核心绝缘子具有增强剂阻断活性,这种特殊的绝缘慢病毒载体设计对于临床应用可能是有用的。

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