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通过细胞内表达的逆转录酶适体实现对 HIV 复制的稳健抑制与核酶加工无关。

Robust suppression of HIV replication by intracellularly expressed reverse transcriptase aptamers is independent of ribozyme processing.

机构信息

Department of Molecular Microbiology and Immunology, University of Missouri, Columbia, MO, USA.

出版信息

Mol Ther. 2012 Dec;20(12):2304-14. doi: 10.1038/mt.2012.158. Epub 2012 Sep 4.

DOI:10.1038/mt.2012.158
PMID:22948672
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3519987/
Abstract

RNA aptamers that bind human immunodeficiency virus 1 (HIV-1) reverse transcriptase (RT) also inhibit viral replication, making them attractive as therapeutic candidates and potential tools for dissecting viral pathogenesis. However, it is not well understood how aptamer-expression context and cellular RNA pathways govern aptamer accumulation and net antiviral bioactivity. Using a previously-described expression cassette in which aptamers were flanked by two "minimal core" hammerhead ribozymes, we observed only weak suppression of pseudotyped HIV. To evaluate the importance of the minimal ribozymes, we replaced them with extended, tertiary-stabilized hammerhead ribozymes with enhanced self-cleavage activity, in addition to noncleaving ribozymes with active site mutations. Both the active and inactive versions of the extended hammerhead ribozymes increased inhibition of pseudotyped virus, indicating that processing is not necessary for bioactivity. Clonal stable cell lines expressing aptamers from these modified constructs strongly suppressed infectious virus, and were more effective than minimal ribozymes at high viral multiplicity of infection (MOI). Tertiary stabilization greatly increased aptamer accumulation in viral and subcellular compartments, again regardless of self-cleavage capability. We therefore propose that the increased accumulation is responsible for increased suppression, that the bioactive form of the aptamer is one of the uncleaved or partially cleaved transcripts, and that tertiary stabilization increases transcript stability by reducing exonuclease degradation.

摘要

RNA 适体能与人类免疫缺陷病毒 1(HIV-1)逆转录酶(RT)结合,还能抑制病毒复制,因此作为治疗候选物和潜在的病毒发病机制研究工具具有吸引力。然而,人们对适体表达环境和细胞 RNA 途径如何控制适体积累和净抗病毒生物活性还不太了解。我们使用了先前描述的表达盒,其中适体两侧有两个“最小核心”锤头核酶,我们观察到仅对假型 HIV 有微弱的抑制作用。为了评估最小核酶的重要性,我们用具有增强自我切割活性的扩展、三级稳定锤头核酶替代了它们,以及具有活性位点突变的非切割核酶。扩展锤头核酶的活性和非活性版本都增加了对假型病毒的抑制作用,表明加工对于生物活性不是必需的。从这些修饰的构建体中表达适体的克隆稳定细胞系强烈抑制感染性病毒,并且在高病毒多重感染(MOI)时比最小核酶更有效。三级稳定极大地增加了病毒和亚细胞区室中适体的积累,再次无论自我切割能力如何。因此,我们提出增加的积累是抑制增加的原因,有活性的适体形式是未切割或部分切割的转录本之一,三级稳定通过减少外切核酸酶降解来增加转录本稳定性。

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