کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
5219260 | 1503210 | 2012 | 13 صفحه PDF | دانلود رایگان |

Model 3â²-azido-3â²-deoxynucleosides with thiol or vicinal dithiol substituents at C2â² or C5â² were synthesized to study reactions postulated to occur during inhibition of ribonucleotide reductases by 2â²-azido-2â²-deoxynucleotides. Esterification of 5â²-(tert-butyldiphenylsilyl)-3â²-azido-3â²-deoxyadenosine and 3â²-azido-3â²-deoxythymidine (AZT) with 2,3-S-isopropylidene-2,3-dimercaptopropanoic acid or N-Boc-S-trityl-L-cysteine and deprotection gave 3â²-azido-3â²-deoxy-2â²-O-(2,3-dimercaptopropanoyl or cysteinyl)adenosine and the 3â²-azido-3â²-deoxy-5â²-O-(2,3-dimercaptopropanoyl or cysteinyl)thymidine analogs. Density functional calculations predicted that intramolecular reactions between generated thiyl radicals and an azido group on such model compounds would be exothermic by 33.6-41.2 kcal/mol and have low energy barriers of 10.4-13.5 kcal/mol. Reduction of the azido group occurred to give 3â²-amino-3â²-deoxythymidine, which was postulated to occur with thiyl radicals generated by treatment of 3â²-azido-3â²-deoxy-5â²-O-(2,3-dimercaptopropanoyl)thymidine with 2,2â²-azobis-(2-methyl-2-propionamidine) dihydrochloride. Gamma radiolysis of N2O-saturated aqueous solutions of AZT and cysteine produced 3â²-amino-3â²-deoxythymidine and thymine most likely by both radical and ionic processes.
Radical abstraction of furanosyl hydrogen atoms from AZT resulted in formation of thymine, whereas HSâ (generated in situ) effected reduction to 3â²-NH2T. Radical generation with AAPH caused reduction of the azido group with 5â²-O-(2,3-dimercaptopropanoyl)-AZT.
Journal: Tetrahedron - Volume 68, Issues 27â28, 8 July 2012, Pages 5655-5667