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N3-Methyluridine and 2'-O-Alkyl/2'-Fluoro-N3-methyluridine functionalized nucleic acids improve nuclease resistance while maintaining duplex geometry.
Sahoo, Avijit; Das, Gourav; Ghosh, Atanu; Shivappa Bagale, Siddharam; Kumar Choudhary, Nishant; Harikrishna, S; Sinha, Surajit; Gore, Kiran R.
Affiliation
  • Sahoo A; Department of Chemistry, Indian Institute of Technology Kharagpur, West Bengal 721302, India.
  • Das G; Department of Chemistry, Indian Institute of Technology Kharagpur, West Bengal 721302, India.
  • Ghosh A; School of Applied and Interdisciplinary Sciences, Indian Association for the Cultivation of Science, Jadavpur, Kolkata 700032, India.
  • Shivappa Bagale S; Department of Chemistry, Indian Institute of Technology Bombay, Mumbai 400076, India.
  • Kumar Choudhary N; Department of Chemistry, Indian Institute of Technology Kharagpur, West Bengal 721302, India.
  • Harikrishna S; Center for Structural Biology, Vanderbilt University, Nashville, TN 37232, United States.
  • Sinha S; School of Applied and Interdisciplinary Sciences, Indian Association for the Cultivation of Science, Jadavpur, Kolkata 700032, India.
  • Gore KR; Department of Chemistry, Indian Institute of Technology Kharagpur, West Bengal 721302, India. Electronic address: kiran@chem.iitkgp.ac.in.
Bioorg Med Chem ; 100: 117616, 2024 Feb 15.
Article in En | MEDLINE | ID: mdl-38295488
ABSTRACT
Herein, we report the synthesis of 2'-O-alkyl/2'-fluoro-N3-methyluridine (2'-O-alkyl/2'-F-m3U) phosphoramidites and their incorporation in DNA and RNA oligonucleotides. The duplex binding affinity and base discrimination studies showed that all 2'-O-alkyl/2'-F-m3U modifications significantly decreased the thermal stability and base-pairing discrimination ability. Serum stability study of dT20 with 2'-O-alkyl-m3U modification exhibited excellent nuclease resistance when incubated with 3'-exonucleases (SVPD) or 5'-exonucleases (PDE-II) as compared to m3U, 2'-F, 2'-OMe modified oligonucleotides. MD simulation studies with RNA tetradecamer duplexes illustrated that the m3U and 2'-O-methyl-m3U modifications reduce the duplex stabilities by disrupting the Watson-Crick hydrogen bonding and base-stacking interactions. Further molecular modelling investigations demonstrated that the 2'-O-propyl-m3U modification exhibits steric interactions with amino acid residues in the active site of 3'- and 5'-exonuclease, leading to enhanced stability. These combined data indicate that the 2'-modified-m3U nucleotides can be used as a promising tool to enhance the stability, silencing efficiency, and drug-like properties of antisense/siRNA-based therapeutics.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Uridine / Nucleic Acids Language: En Journal: Bioorg Med Chem Journal subject: BIOQUIMICA / QUIMICA Year: 2024 Document type: Article Affiliation country: India Country of publication: United kingdom

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Uridine / Nucleic Acids Language: En Journal: Bioorg Med Chem Journal subject: BIOQUIMICA / QUIMICA Year: 2024 Document type: Article Affiliation country: India Country of publication: United kingdom