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Titers of lentiviral vectors encoding shRNAs and miRNAs are reduced by different mechanisms that require distinct repair strategies.

机译:编码shRNA和miRNA的慢病毒载体的滴度通过需要不同修复策略的不同机制降低。

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RNAi-based gene therapy is a powerful approach to treat viral infections because of its high efficiency and sequence specificity. The HIV-1-based lentiviral vector system is suitable for the delivery of RNAi inducers to HIV-1 susceptible cells due to its ability to transduce nondividing cells, including hematopoietic stem cells, and its ability for stable transgene delivery into the host cell genome. However, the presence of anti-HIV short hairpin RNA (shRNA) and microRNA (miRNA) cassettes can negatively affect the lentiviral vector titers. We show that shRNAs, which target the vector genomic RNA, strongly reduced lentiviral vector titers but inhibition of the RNAi pathway via saturation could rescue vector production. The presence of miRNAs in the vector RNA genome (sense orientation) results in a minor titer reduction due to Drosha processing. A major cause for titer reduction of miRNA vectors is due to incompatibility of the cytomegalovirus promoter with the lentiviral vector system. Replacement of this promoter with an inducible promoter resulted in an almost complete restoration of the vector titer. We also showed that antisense poly(A) signal sequences can have a dramatic effect on the vector titer. These results show that not all sequences are compatible with the lentiviral vector system and that care should be taken in the design of lentiviral vectors encoding RNAi inducers.
机译:基于RNAi的基因治疗具有很高的效率和序列特异性,是治疗病毒感染的有效方法。基于HIV-1的慢病毒载体系统由于可转导包括造血干细胞在内的非分裂细胞,并且能够将转基因稳定地传递至宿主细胞基因组,因此适合将RNAi诱导剂传递至HIV-1易感细胞。但是,抗HIV短发夹RNA(shRNA)和microRNA(miRNA)盒的存在会对慢病毒载体的滴度产生负面影响。我们表明靶向载体基因组RNA的shRNA大大降低了慢病毒载体的滴度,但通过饱和抑制RNAi途径可以挽救载体的产生。由于Drosha加工,载体RNA基因组中miRNA的存在(有义方向)导致滴度降低较小。 miRNA载体效价降低的主要原因是巨细胞病毒启动子与慢病毒载体系统不兼容。用诱导型启动子替换该启动子导致载体滴度几乎完全恢复。我们还表明,反义poly(A)信号序列可以对载体效价产生显着影响。这些结果表明,并非所有序列都与慢病毒载体系统兼容,因此在设计编码RNAi诱导剂的慢病毒载体时应格外小心。

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