1. Academic Validation
  2. Prodrugs of the Phosphoribosylated Forms of Hydroxypyrazinecarboxamide Pseudobase T-705 and Its De-Fluoro Analogue T-1105 as Potent Influenza Virus Inhibitors

Prodrugs of the Phosphoribosylated Forms of Hydroxypyrazinecarboxamide Pseudobase T-705 and Its De-Fluoro Analogue T-1105 as Potent Influenza Virus Inhibitors

  • J Med Chem. 2018 Jul 26;61(14):6193-6210. doi: 10.1021/acs.jmedchem.8b00617.
Johanna Huchting 1 2 Evelien Vanderlinden 2 Matthias Winkler 1 Hiba Nasser 1 Lieve Naesens 2 Chris Meier 1
Affiliations

Affiliations

  • 1 Organic Chemistry, Department of Chemistry, Faculty of Sciences , Hamburg University , Martin-Luther-King-Platz 6 , D-20146 Hamburg , Germany.
  • 2 KU Leuven, Rega Institute for Medical Research , Herestraat 49 , B-3000 Leuven , Belgium.
Abstract

We here disclose chemical synthesis of ribonucleoside 5'-monophosphate (RMP), -diphosphate (RDP), and -triphosphate (RTP) and cycloSal-, Di PPro-, and Tri PPPro nucleotide prodrugs of the Antiviral pseudobase T-1105. Moreover, we include one nucleoside diphosphate prodrug of the chemically less stable T-705. We demonstrate efficient T-1105-RDP and -RTP release from the Di PPro and Tri PPPro compounds by esterase activation. Using crude Enzyme extracts, we saw rapid phosphorylation of T-1105-RDP into T-1105-RTP. In sharp contrast, phosphorylation of T-1105-RMP was not seen, indicating a yet unrecognized bottleneck in T-1105's metabolic activation. Accordingly, Di PPro and Tri PPPro compounds displayed improved Cell Culture activity against influenza A and B virus, which they retained in a mutant cell line incapable of activating the nucleobase parent. T-1105-RTP had a strong inhibitory effect against isolated influenza polymerase, and Di PPro-T-1105-RDP showed 4-fold higher potency in suppressing one-cycle viral RNA synthesis versus T-1105. Hence, our T-1105-RDP and -RTP prodrugs improve Antiviral potency and achieve efficient metabolic bypass.

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