首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >Specific inhibition of HBV replication in vitro and in vivo with expressed long hairpin RNA.
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Specific inhibition of HBV replication in vitro and in vivo with expressed long hairpin RNA.

机译:用表达的长发夹RNA在体内和体外特异性抑制HBV复制。

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Activating RNA interference to achieve specific gene silencing has shown promise for the development of RNA-based treatment of chronic hepatitis B virus (HBV) infection. To further this approach, we assessed the efficacy of expressed long hairpin RNAs (lhRNAs) that target the conserved HBx open reading frame of HBV. As substrates for Dicer, lhRNAs have the potential to generate multiple short interfering RNAs (siRNAs) to enable simultaneous targeting of different sites. Two U6 Pol III vectors were constructed that encode anti-HBV lhRNAs with a 62 base pair stem sequence containing multiple G:U pairings. Assessment in transfected cultured cells and also in vivo using the murine hydrodynamic injection model showed that one of the lhRNA vectors (lhRNA 1) diminished markers of virus replication by 70-90% without evidence of interferon response induction. Greatest silencing efficacy was observed for targets that are complementary to sequences located at the base of the hairpin stem and this correlated with a higher concentration of siRNAs derived from this region of the lhRNA. Although lhRNA 1 has the advantage of targeting a greater viral sequence, incomplete cellular processing may result in unequal silencing across the span of the viral target RNA.Molecular Therapy (2007) 15, 534-541. doi:10.1038/sj.mt.6300077; published online 9 January 2006.
机译:激活RNA干扰以实现特定基因沉默已显示出有望开发基于RNA的慢性乙型肝炎病毒(HBV)感染的治疗方法。为了进一步采用这种方法,我们评估了靶向长的HBV保守HBx开放阅读框的长发夹RNA(lhRNA)的功效。作为Dicer的底物,lhRNA具有产生多个短干扰RNA(siRNA)的潜力,从而可以同时靶向不同的位点。构建了两个U6 Pol III载体,它们编码具有包含多个G:U对的62个碱基对的茎序列的抗HBV 1hRNA。使用鼠液动力学注射模型对转染的培养细胞以及体内进行的评估显示,其中一种lhRNA载体(lhRNA 1)将病毒复制的标记减少了70-90%,而没有干扰素应答诱导的证据。对于与位于发夹茎基部的序列互补的靶标,观察到最大的沉默功效,这与源自1hRNA区域的更高浓度的siRNA相关。尽管1hRNA 1具有靶向更大病毒序列的优势,但是不完全的细胞加工可能会导致跨越病毒靶RNA跨度的不平等沉默。MolecularTherapy(2007)15,534-541。 doi:10.1038 / sj.mt.6300077; 2006年1月9日在线发布。

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