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A Triplex Ribozyme Expression System Based on a Single Hairpin Ribozyme

机译:基于单个发夹状核酶的三联核酶表达系统

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摘要

Triplex ribozyme (RZ) configurations allow for the individual activity of trans-acting RZs in multiple expression cassettes (multiplex), thereby increasing target cleavage relative to conventionally expressed RZs. Although hairpin RZs have been advantageously compared to hammerhead RZs, their longer size and structural features complicated triplex design. We present a triplex expression system based on a single hairpin RZ with trans-cleavage capability and simple engineering. The system was tested in vitro using cis- and trans-cleavage kinetic assays against a known target RNA from HPV-16 E6/E7 mRNA. Single and multiplex triplex RZ constructs were more efficient in cleaving the target than tandem-cloned hairpin RZs, suggesting that the release of individual RZs enhanced trans-cleavage kinetics. Multiplex systems constructed with two different hairpin RZs resulted in better trans-cleavage compared to standard double-RZ constructs. In addition, the triplex RZ performed cis- and trans-cleavage in cervical cancer cells. The use of triplex configurations with multiplex RZs permit differential targeting of the same or different RNA, thus improving potential use against unstable targets. This prototype will provide the basis for the development of future RZ-based therapies and technologies.
机译:三联核酶(RZ)构型允许在多个表达盒(多重)中进行反式作用的RZs的单独活性,从而相对于常规表达的RZs增加靶标的裂解。尽管发夹型RZ与锤头型RZ相比具有优势,但其较长的尺寸和结构特征使三重结构设计变得复杂。我们提出了一个基于单一发夹RZ的三链体表达系统,具有转座功能和简单的工程设计。使用针对HPV-16 E6 / E7 mRNA的已知靶RNA的顺式和反式裂解动力学测定,对该系统进行了体外测试。单链和多重三链体RZ构建体比串联克隆的发夹RZs更有效地切割靶标,表明单个RZ的释放增强了反式裂解动力学。与标准双RZ构建体相比,用两个不同的发夹RZ构建的多路复用系统产生了更好的反式切割。另外,三链体RZ在宫颈癌细胞中进行了顺式和反式切割。具有多重RZ的三链体构型的使用允许差异靶向相同或不同的RNA,从而提高了针对不稳定靶标的潜在用途。该原型将为未来基于RZ的疗法和技术的开发提供基础。

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