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基因沉默多聚嘌呤反向Hoogsteen发夹的稳定性和免疫原性特性

Stability and immunogenicity properties of the gene-silencing polypurine reverse Hoogsteen hairpins.

作者信息

Villalobos Xenia, Rodríguez Laura, Prévot Jeanne, Oleaga Carlota, Ciudad Carlos J, Noé Véronique

机构信息

Department of Biochemistry and Molecular Biology, School of Pharmacy, University of Barcelona , Av. Diagonal 643, E-08028 Barcelona, Spain.

出版信息

Mol Pharm. 2014 Jan 6;11(1):254-64. doi: 10.1021/mp400431f. Epub 2013 Nov 27.

Abstract

Gene silencing by either small-interference RNAs (siRNA) or antisense oligodeoxynucleotides (aODN) is widely used in biomedical research. However, their use as therapeutic agents is hindered by two important limitations: their low stability and the activation of the innate immune response. Recently, we developed a new type of molecule to decrease gene expression named polypurine reverse Hoogsteen hairpins (PPRHs) that bind to polypyrimidine targets in the DNA. Herein, stability experiments performed in mouse, human, and fetal calf serum and in PC3 cells revealed that the half-life of PPRHs is much longer than that of siRNAs in all cases. Usage of PPRHs with a nicked-circular structure increased the binding affinity to their target sequence and their half-life in FCS when bound to the target. Regarding the innate immune response, we determined that the levels of the transcription factors IRF3 and its phosphorylated form, as well as NF-κB were increased by siRNAs and not by PPRHs; that the expression levels of several proinflammatory cytokines including IL-6, TNF-α, IFN-α, IFN-ß, IL-1ß, and IL-18 were not significantly increased by PPRHs; and that the cleavage and activation of the proteolytic enzyme caspase-1 was not triggered by PPRHs. These determinations indicated that PPRHs, unlike siRNAs, do not activate the innate inflammatory response.

摘要

通过小干扰RNA(siRNA)或反义寡脱氧核苷酸(aODN)进行基因沉默在生物医学研究中被广泛应用。然而,它们作为治疗剂的应用受到两个重要限制:稳定性低和激活先天免疫反应。最近,我们开发了一种新型分子来降低基因表达,名为多嘌呤反向Hoogsteen发夹(PPRH),它能与DNA中的多嘧啶靶标结合。在此,在小鼠、人及胎牛血清以及PC3细胞中进行的稳定性实验表明,在所有情况下PPRH的半衰期都比siRNA长得多。具有缺口环状结构的PPRH在与靶标结合时,会增加其与靶标序列的结合亲和力及其在胎牛血清中的半衰期。关于先天免疫反应,我们确定转录因子IRF3及其磷酸化形式以及NF-κB的水平是由siRNA而非PPRH升高的;包括IL-6、TNF-α、IFN-α、IFN-β、IL-1β和IL-18在内的几种促炎细胞因子的表达水平并未因PPRH而显著升高;并且PPRH不会触发蛋白水解酶caspase-1的切割和激活。这些测定表明,与siRNA不同,PPRH不会激活先天炎症反应。

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