Stereochemical bias introduced during RNA synthesis modulates the activity of phosphorothioate siRNAs

説明

<jats:title>Abstract</jats:title><jats:p>An established means of improving the pharmacokinetics properties of oligoribonucleotides (ORNs) is to exchange their phosphodiester linkages for phosphorothioates (PSs). However, this strategy has not been pursued for small interfering RNAs (siRNAs), possibly because of sporadic reports that PS siRNAs show reduced inhibitory activity. The PS group is chiral at phosphorous (<jats:italic>R</jats:italic>p/<jats:italic>S</jats:italic>p centres), and conventional solid-phase synthesis of PS ORNs produces a population of diastereoisomers. Here we show that the choice of the activating agent for the synthesis of a PS ORN influences the<jats:italic>R</jats:italic>p/<jats:italic>S</jats:italic>p ratio of PS linkages throughout the strand. Furthermore, PS siRNAs composed of ORNs with a higher fraction of<jats:italic>R</jats:italic>p centres show greater resistance to nucleases in serum and are more effective inhibitors in cells than their<jats:italic>S</jats:italic>p counterparts. The finding that a stereochemically biased population of ORN diastereoisomers can be synthesized and exploited pharmacologically is important because uniform PS modification of siRNAs may provide a useful compromise of their pharmacokinetics and pharmacodynamics properties in RNAi therapeutics.</jats:p>

収録刊行物

  • Nature Communications

    Nature Communications 6 (1), 6317-, 2015-03-06

    Springer Science and Business Media LLC

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