Doxtader Lacy Katelyn A, Liang Xue-Hai, Zhang Lingdi, Crooke Stanley T
Core Antisense Research Ionis Pharmaceuticals, Inc, Carlsbad, CA 92008, USA.
Mol Ther Nucleic Acids. 2022 May 11;28:814-828. doi: 10.1016/j.omtn.2022.05.024. eCollection 2022 Jun 14.
Phosphorothioate modified antisense oligonucleotides (PS-ASOs) can reduce gene expression through hybridization to target RNAs and subsequent cleavage by RNase H1. Target reduction through this mechanism is influenced by numerous features of the RNA, which modulate PS-ASO binding affinities to the RNA target, and how the PS-ASO-RNA hybrid is recognized by RNase H1 for RNA cleavage. Endogenous RNAs are frequently chemically modified, which can regulate intra- and intermolecular interactions of the RNA. The effects of PS-ASO modifications on antisense activity have been well studied; however, much less is known regarding the effects of RNA modifications on PS-ASO hybridization and RNase H1 cleavage activity. Here, we determine the effects of three different RNA modifications on PS-ASO binding and antisense activity in recombinant and cell-based systems. Some RNA modifications can reduce PS-ASO hybridization, the cleavage activity of RNase H1, or both, while other modifications had minimal effects on PS-ASO function. In addition to these direct effects, RNA modifications can also change the RNA structure, which may affect PS-ASO accessibility in a cellular context. Our results elucidate the effects of three prevalent RNA modifications on PS-ASO-mediated RNase H1 cleavage activity, and such findings will help improve PS-ASO target site selection.
硫代磷酸酯修饰的反义寡核苷酸(PS-ASO)可通过与靶RNA杂交并随后被核糖核酸酶H1切割来降低基因表达。通过这种机制实现的靶标减少受RNA的众多特征影响,这些特征调节PS-ASO与RNA靶标的结合亲和力,以及PS-ASO-RNA杂交体如何被核糖核酸酶H1识别以进行RNA切割。内源性RNA经常进行化学修饰,这可调节RNA的分子内和分子间相互作用。PS-ASO修饰对反义活性的影响已得到充分研究;然而,关于RNA修饰对PS-ASO杂交和核糖核酸酶H1切割活性的影响知之甚少。在这里,我们确定了三种不同的RNA修饰对重组和基于细胞的系统中PS-ASO结合和反义活性的影响。一些RNA修饰可降低PS-ASO杂交、核糖核酸酶H1的切割活性或两者,而其他修饰对PS-ASO功能的影响最小。除了这些直接影响外,RNA修饰还可改变RNA结构,这可能会影响细胞环境中PS-ASO的可及性。我们的结果阐明了三种常见的RNA修饰对PS-ASO介导的核糖核酸酶H1切割活性的影响,这些发现将有助于改进PS-ASO靶位点的选择。