A novel approach for inhibition of HIV-1 by RNA interference: counteracting viral escape with a second generation of siRNAs.

Olivier ter Brake, Ben Berkhout
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Abstract

RNA interference (RNAi) is an evolutionary conserved gene silencing mechanism in which small interfering RNA (siRNA) mediates the sequence specific degradation of mRNA. The recent discovery that exogenously delivered siRNA can trigger RNAi in mammalian cells raises the possibility to use this technology as a therapeutic tool against pathogenic viruses. Indeed, it has been shown that siRNAs can be used effectively to inhibit virus replication. The focus of this review is on RNA interference strategies against HIV-1 and how this new technology may be developed into a new successful therapy. One of the hallmarks of RNAi, its sequence specificity, also presents a way out for the virus, as single nucleotide substitutions in the target region can abolish the suppression. Strategies to prevent the emergence of resistant viruses have been suggested and involve the targeting of conserved sequences and the simultaneous use of multiple siRNAs, similar to current highly active antiretroviral therapy. We present an additional strategy aimed at preventing viral escape by using a second generation of siRNAs that recognize the mutated target sites.

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通过RNA干扰抑制HIV-1的新方法:用第二代sirna对抗病毒逃逸。
RNA干扰(RNAi)是一种进化保守的基因沉默机制,其中小干扰RNA (siRNA)介导mRNA的序列特异性降解。最近发现外源性siRNA可以在哺乳动物细胞中触发RNAi,这增加了使用该技术作为治疗致病性病毒的工具的可能性。事实上,已经证明sirna可以有效地用于抑制病毒复制。这篇综述的重点是针对HIV-1的RNA干扰策略以及这种新技术如何发展成为一种新的成功的治疗方法。RNAi的一个特点是序列特异性,这也为病毒提供了一条出路,因为在靶区进行单核苷酸替换可以消除抑制。已经提出了防止耐药病毒出现的策略,包括针对保守序列和同时使用多种sirna,类似于目前的高活性抗逆转录病毒疗法。我们提出了一种额外的策略,旨在通过使用识别突变目标位点的第二代sirna来防止病毒逃逸。
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