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Synthesis of Nucleoside Analogs Containing Sulfur or Selenium Replacements of the Ribose Ring Oxygen or Carbon. (2024)
Journal Article
Benckendorff, C. M. M., Sunde-Brown, P., Ní Cheallaigh, A., & Miller, G. J. (2024). Synthesis of Nucleoside Analogs Containing Sulfur or Selenium Replacements of the Ribose Ring Oxygen or Carbon. Journal of Organic Chemistry, 89(23), 16977-16989. https://doi.org/10.1021/acs.joc.4c02409

Nucleoside analogs have proven highly successful in many pharmaceutical intervention strategies, and continued exploration of next generation structural motifs is required. Herein we discuss recent advances toward the chemical synthesis of heteroatom... Read More about Synthesis of Nucleoside Analogs Containing Sulfur or Selenium Replacements of the Ribose Ring Oxygen or Carbon..

Biocatalytic Nucleobase Diversification of 4'-Thionucleosides and Application of Derived 5-Ethynyl-4'-thiouridine for RNA synthesis detection. (2024)
Journal Article
Westarp, S., Benckendorff, C., Motter, J., Rohrs, V., Sanghvi, Y., Neubauer, P., …Miller, G. J. (in press). Biocatalytic Nucleobase Diversification of 4'-Thionucleosides and Application of Derived 5-Ethynyl-4'-thiouridine for RNA synthesis detection. Angewandte Chemie, Article e202405040. https://doi.org/10.1002/anie.202405040

Nucleoside and nucleotide analogues have proven to be transformative in the treatment of viral infections and cancer. One branch of structural modification to deliver new nucleoside analogue classes explores replacement of canonical ribose oxygen wit... Read More about Biocatalytic Nucleobase Diversification of 4'-Thionucleosides and Application of Derived 5-Ethynyl-4'-thiouridine for RNA synthesis detection..