(Z)- and (E)-2-(Hydroxymethylcyclopropylidene)-Methylpurines and Pyrimidines as Antiviral Agents
Open Access
- 1 August 1998
- journal article
- research article
- Published by SAGE Publications in Antiviral Chemistry and Chemotherapy
- Vol. 9 (4) , 57-68
- https://doi.org/10.1177/095632029800900406
Abstract
Several Z- and E-methylenecyclopropane nucleoside analogues were synthesized and evaluated for antiviral activity. Reaction of the Z- and E-2-amino-6-chloropurine methylenecyclopropanes with ammonia or cyclopropylamine gave 2,6-diamino or 2-amino-6-cyclopropylamino analogues. Alkylation elimination of N4-acetylcytosine with ethyl Z- and E-2-bromo-2-bromomethylcyclopropane-1-carboxylates gave a mixture of the Z-and E-methylenecyclopropane derivatives of cytosine. Reduction furnished a mixture of syncytol and the E isomer. Benzoylation led to the respective N4-benzoyl derivatives which were separated by chromatography. Debenzoylation afforded pure syncytol and the E isomer. Alkylation of 2,4-bis-O-trimethylsilylthymine with ethyl Z- and E-2-bromo-2-bromomethylcyclopropane-1-carboxylates gave the corresponding Z- and E-1-bromo-cyclopropylmethylderivatives of thymine. Base-catalysed elimination of HBr gave Z- and E-methylenecyclopropane carboxylic esters. Reduction furnished, after chromatographic separation, synthymol and the E isomer. The Z/E isomeric assignment of the obtained products followed from 1H NMR spectroscopy. The methylenecyclopropane analogues were tested for antiviral activity in vitro against human and murine cytomegalovirus (HCMV, MCMV), Epstein–Barr virus (EBV), varicella zoster virus (VZV), hepatitis B virus (HBV), herpes simplex virus types 1 and 2 (HSV-1, HSV-2), human herpesvirus 6 (HHV-6) and human immunodeficiency virus type 1 (HIV-1). The Z-2-amino-6-cyclopropylaminopurine analogue was the most effective agent against HCMV (EC50 or EC90 0.4–2 μM) followed by syncytol and the Z-2,6-diaminopurine analogues (EC50 or EC90 3.4–29 and 11–24 μM, respectively). The latter compound was also a strong inhibitor of MCMV (EC50 0.6 μM). Syncytol was the most potent against EBV (EC50 74 μM in HSV-1 and HSV-2 assays. 2-Amino-6-cyclopropylaminopurine and 2,6-diaminopurine derivatives were effective against HBV (EC50 2 and 10 μM, respectively), whereas none of the analogues inhibited HIV-1 at a higher virus load. Syncytol and the E isomer were equipotent against EBV in Daudi cells but the E isomer was much less effective in DNA hybridization assays. The E-2,6-diaminopurine analogue and E isomer of synthymol were devoid of antiviral activity.Keywords
This publication has 15 references indexed in Scilit:
- (Z)- and (E)-2-((Hydroxymethyl)cyclopropylidene)methyladenine and -guanine. New Nucleoside Analogues with a Broad-Spectrum Antiviral ActivityJournal of Medicinal Chemistry, 1998
- Antiviral Nucleoside Analogues with Axial ChiralityNucleosides and Nucleotides, 1997
- 2-Hydroxymethylcyclopropylidenemethylpurines and -pyrimidines - New nucleoside analogs with a broad spectrum antiviral activityAntiviral Research, 1997
- Synthesis and isomeric assignment of 2-hydroxymethylcyclopropylidenepurines and -pyrimidines- new antiviral agents: Y.-L. Qiu and J. Zemlicka, Karmanos Cancer Institute, Wayne State University School of Medicine, Detroit, MI 48201; M. B. Ksebati, Central Instrumentation Facility, Wayne State University, Detroit, MI 48202; J. C. Drach, School of Dentistry, University of Michigan, Ann Arbor, MI 48019Antiviral Research, 1997
- Synthesis and Antiviral Activity of 2‘-Deoxy-4‘-thio Purine NucleosidesJournal of Medicinal Chemistry, 1996
- Allenols Derived from Nucleic Acid Bases — A New Class of Anti-HIV Agents: Chemistry and Biological ActivityPublished by Springer Nature ,1993
- Unsaturated and carbocyclic nucleoside analogs: synthesis, antitumor and antiviral activityJournal of Medicinal Chemistry, 1991
- Molecular Targets for AIDS TherapyScience, 1990
- Factors influencing the H6 chemical shift in pyrimidine nucleosidesJournal of the American Chemical Society, 1975
- Oligonucleotidic compounds. XXXIII. A study on hydrolysis of N-dimethylaminomethylenecytidine, -adenosine, -guanosine, and related 2'-deoxy compoundsCollection of Czechoslovak Chemical Communications, 1969