Organometallic Intermediates in the Synthesis of Nucleoside Analogs
- 1 January 1982
- journal article
- research article
- Published by Taylor & Francis in Nucleosides and Nucleotides
- Vol. 1 (1) , 1-34
- https://doi.org/10.1080/07328318208079399
Abstract
The common nucleosides, modified or derivatized in some way at the heterocyclic ring carbons, include examples of structures which a r e useful as biological probes and chemotherapeutic agents. Like previous authors, we will use the term “nucleoside analog” for structures related to one of the common naturally occurring nucleosides. Nucleosicle analogs can be derivatives which differ by such minor modification as replacement of hydrogen by a single atom or derivatives which are grossly modified at both the carbohydrate and the base. Examples of the former include 5-fluoro-2′-deoxyuridine, an inhibitor of thymidylate synthetase as its 5′-phosphate, and 5′-iodo-2′-deoxyuridine, a clinically useful antiviral agent. Larger groups have frequently been linked to nucleoside as probes for enzymatic processes. Side chains in “nonrestricted positions” may be used to carry spectroscopic or chemically reactive probes, or provide the means to attach a molecule to an affinity column. Ultimately with positions of bulk tolerance defined, it may be possible to design “active site directed irreversible enzyme inhibitors” as defined by B.R. Baker. Nucleoside structures in which a side chain is attached at a pyrimidine or purine carbon will undoubtedly, in some instances be the most appropriate structure. Yet, these have typically been more difficult to synthesize than analogs with side chains attached to heteroatoms.Keywords
This publication has 81 references indexed in Scilit:
- Synthesis of 6-substituted uridines. synthesis of (R or S)-6-(3-amino-2-carboxypropyl)uridineCarbohydrate Research, 1980
- Reaction of 6-methylsulfonylpurine riboside with carbon nucleophiles and the synthesis of 6-alkylpurine nucleosides (Nucleosides and nucleotides. XXIX).CHEMICAL & PHARMACEUTICAL BULLETIN, 1980
- Synthesis of 2- and 8-Cyanoadenosines and Their Derivatives : Nucleosides and Nucleotides. XXVIICHEMICAL & PHARMACEUTICAL BULLETIN, 1979
- Studies on 6-C-substituted purine nucleosides. Reaction of 6-chloropurine ribonucleosides with active methylene compoundsNucleic Acids Research, 1978
- 31P and 1H NMR investigation of the structure of the phosphorylating intermediates in the phosphodiester approach to the oligonucleotide synthesisNucleic Acids Research, 1978
- Synthesis of 6-cyanocytidine and its derivatives (nucleosides and nucleotides. XX.CHEMICAL & PHARMACEUTICAL BULLETIN, 1978
- 5-Substituted pyrimidine nucleosides and nucleotidesChemical Society Reviews, 1977
- SYNTHESIS AND REACTION OF SOME 6‐SUBSTITUTED PYRIMIDINE NUCLEOSIDES*Annals of the New York Academy of Sciences, 1975
- A General Method of Alkylation and Alkenylation HeterocyclesJournal of the American Chemical Society, 1974
- Purine Nucleosides. VII. Direct Bromination of Adenosine, Deoxyadenosine, Guanosine, and Related Purine NucleosidesJournal of the American Chemical Society, 1964