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

Author

Listed:
  • Hartmut Jahns

    (ETH Zürich)

  • Martina Roos

    (ETH Zürich)

  • Jochen Imig

    (ETH Zürich)

  • Fabienne Baumann

    (ETH Zürich)

  • Yuluan Wang

    (ETH Zürich)

  • Ryan Gilmour

    (Institute for Organic Chemistry, Westfälische Wilhelms-Universität Münster)

  • Jonathan Hall

    (ETH Zürich)

Abstract

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 (Rp/Sp 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 Rp/Sp ratio of PS linkages throughout the strand. Furthermore, PS siRNAs composed of ORNs with a higher fraction of Rp centres show greater resistance to nucleases in serum and are more effective inhibitors in cells than their Sp 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.

Suggested Citation

  • Hartmut Jahns & Martina Roos & Jochen Imig & Fabienne Baumann & Yuluan Wang & Ryan Gilmour & Jonathan Hall, 2015. "Stereochemical bias introduced during RNA synthesis modulates the activity of phosphorothioate siRNAs," Nature Communications, Nature, vol. 6(1), pages 1-9, May.
  • Handle: RePEc:nat:natcom:v:6:y:2015:i:1:d:10.1038_ncomms7317
    DOI: 10.1038/ncomms7317
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    1. Evangelia Lekka & Aleksandra Kokanovic & Simone Mosole & Gianluca Civenni & Sandro Schmidli & Artur Laski & Alice Ghidini & Pavithra Iyer & Christian Berk & Alok Behera & Carlo V. Catapano & Jonathan , 2022. "Pharmacological inhibition of Lin28 promotes ketogenesis and restores lipid homeostasis in models of non-alcoholic fatty liver disease," Nature Communications, Nature, vol. 13(1), pages 1-17, December.

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