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  • Chemical modification of PS...
    Shen, Wen; De Hoyos, Cheryl L; Migawa, Michael T; Vickers, Timothy A; Sun, Hong; Low, Audrey; Bell, 3rd, Thomas A; Rahdar, Meghdad; Mukhopadhyay, Swagatam; Hart, Christopher E; Bell, Melanie; Riney, Stan; Murray, Susan F; Greenlee, Sarah; Crooke, Rosanne M; Liang, Xue-Hai; Seth, Punit P; Crooke, Stanley T

    Nature biotechnology, 06/2019, Letnik: 37, Številka: 6
    Journal Article

    The molecular mechanisms of toxicity of chemically modified phosphorothioate antisense oligonucleotides (PS-ASOs) are not fully understood. Here, we report that toxic gapmer PS-ASOs containing modifications such as constrained ethyl (cEt), locked nucleic acid (LNA) and 2'-O-methoxyethyl (2'-MOE) bind many cellular proteins with high avidity, altering their function, localization and stability. We show that RNase H1-dependent delocalization of paraspeckle proteins to nucleoli is an early event in PS-ASO toxicity, followed by nucleolar stress, p53 activation and apoptotic cell death. Introduction of a single 2'-O-methyl (2'-OMe) modification at gap position 2 reduced protein-binding, substantially decreasing hepatotoxicity and improving the therapeutic index with minimal impairment of antisense activity. We validated the ability of this modification to generally mitigate PS-ASO toxicity with more than 300 sequences. Our findings will guide the design of PS-ASOs with optimal therapeutic profiles.