Saayman Sheena, Barichievy Samantha, Capovilla Alexio, Morris Kevin V, Arbuthnot Patrick, Weinberg Marc S
Antiviral Gene Therapy Research Unit, Department of Molecular Medicine and Haematology, University of Witwatersrand, Johannesburg, South Africa.
PLoS One. 2008 Jul 2;3(7):e2602. doi: 10.1371/journal.pone.0002602.
RNA Interference (RNAi) effectors have been used to inhibit rogue RNAs in mammalian cells. However, rapidly evolving sequences such as the human immunodeficiency virus type 1 (HIV-1) require multiple targeting approaches to prevent the emergence of escape variants. Expressed long hairpin RNAs (lhRNAs) have recently been used as a strategy to produce multiple short interfering RNAs (siRNAs) targeted to highly variant sequences. We aimed to characterize the ability of expressed lhRNAs to generate independent siRNAs that silence three non-contiguous HIV-1 sites by designing lhRNAs comprising different combinations of siRNA-encoding sequences. All lhRNAs were capable of silencing individual target sequences. However, silencing efficiency together with concentrations of individual lhRNA-derived siRNAs diminished from the stem base (first position) towards the loop side of the hairpin. Silencing efficacy against HIV-1 was primarily mediated by siRNA sequences located at the base of the stem. Improvements could be made to first and second position siRNAs by adjusting spacing arrangements at their junction, but silencing of third position siRNAs remained largely ineffective. Although lhRNAs offer advantages for combinatorial RNAi, we show that good silencing efficacy across the span of the lhRNA duplex is difficult to achieve with sequences that encode more than two adjacent independent siRNAs.
RNA干扰(RNAi)效应物已被用于抑制哺乳动物细胞中的异常RNA。然而,像人类免疫缺陷病毒1型(HIV-1)这样快速进化的序列需要多种靶向方法来防止逃逸变体的出现。表达的长发夹RNA(lhRNA)最近已被用作一种策略,以产生靶向高度变异序列的多个小干扰RNA(siRNA)。我们旨在通过设计包含不同siRNA编码序列组合的lhRNA,来表征表达的lhRNA产生独立siRNA的能力,这些siRNA可沉默三个不连续的HIV-1位点。所有lhRNA都能够沉默单个靶序列。然而,沉默效率以及单个lhRNA衍生的siRNA的浓度从茎基部(第一位)向发夹的环侧降低。对HIV-1的沉默效力主要由位于茎基部的siRNA序列介导。通过调整其连接处的间隔排列,可以对第一位和第二位的siRNA进行改进,但第三位siRNA的沉默在很大程度上仍然无效。尽管lhRNA为组合RNAi提供了优势,但我们表明,对于编码两个以上相邻独立siRNA的序列,很难在lhRNA双链体的整个跨度上实现良好的沉默效力。