» Articles » PMID: 11197336

Synthesis and Cytotoxicity of 4'-C- and 5'-C-substituted Toyocamycins

Overview
Journal Bioorg Med Chem
Specialties Biochemistry
Chemistry
Date 2001 Feb 24
PMID 11197336
Citations 3
Authors
Affiliations
Soon will be listed here.
Abstract

Toyocamycin and some analogues have shown potent antitumor activities; however, none of them could be used clinically primarily owing to their cytotoxicity to normal human cells. In order to overcome the weakness of these nucleoside analogues, substitution of a variety of modified sugars for the ribofuranose was explored in our laboratories with expectation that certain sugar-modified toyocamycin analogues may be selectively cytotoxic to cancer cells. In this article, we report synthesis and cytotoxicity of 4'-C- and 5'-C-substituted toyocamycins, which were prepared via the condensations of 4-C- and 5-C-substituted ribofuranose derivatives 11, 12, 13, 20, 21, and 26 with the silylated form of 4-amino-6-bromo-5-cyanopyrrolo[2,3-]pyrimidine (27) and subsequent debromination and debenzoylation. When compared to the parent toyocamycin, all these analogues showed much lower cytotoxicity to human prostate cancer cells (HTB-81), mouse melanoma cancer cells (B16) as well as normal human fibroblasts. Compound 1e showed a significant cytotoxicity to the prostate cancer cells and a moderate selectivity. The results suggested that sugar modifications, especially those that may affect phosphorylation of nucleosides, could alter cytotoxicity profile significantly.

Citing Articles

Pyrrolo[2,3-d]pyrimidine (7-deazapurine) as a privileged scaffold in design of antitumor and antiviral nucleosides.

Perlikova P, Hocek M Med Res Rev. 2017; 37(6):1429-1460.

PMID: 28834581 PMC: 5656927. DOI: 10.1002/med.21465.


Exploiting Protein Conformational Change to Optimize Adenosine-Derived Inhibitors of HSP70.

Cheeseman M, Westwood I, Barbeau O, Rowlands M, Dobson S, Jones A J Med Chem. 2016; 59(10):4625-36.

PMID: 27119979 PMC: 5371393. DOI: 10.1021/acs.jmedchem.5b02001.


Allenyl azide cycloaddition chemistry: application to the total synthesis of (±)-meloscine.

Feldman K, Antoline J Org Lett. 2012; 14(3):934-7.

PMID: 22242696 PMC: 3272129. DOI: 10.1021/ol203463n.