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Cited 13 time in webofscience Cited 12 time in scopus
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Asymmetric Synthesis of 2 '-C-Methyl-4 '-selenonucleosides as Anti-Hepatitis C Virus Agents

Authors
Lee, HyejinJarhad, Dnyandev B.Yu, JinhaLee, ChoonghoJeong, Lak Shin
Issue Date
15-Nov-2019
Publisher
AMER CHEMICAL SOC
Citation
JOURNAL OF ORGANIC CHEMISTRY, v.84, no.22, pp 14414 - 14426
Pages
13
Indexed
SCI
SCIE
SCOPUS
Journal Title
JOURNAL OF ORGANIC CHEMISTRY
Volume
84
Number
22
Start Page
14414
End Page
14426
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/7407
DOI
10.1021/acs.joc.9b01462
ISSN
0022-3263
1520-6904
Abstract
In search of a new template for anti-hepatitis C virus (HCV) agents, we designed and synthesized the 2'-C-methyl-4'-selenopyrimidine and -purine nucleosides and their phosphoramidate prodrugs to replace a furanose oxygen of anti-HCV nucleos(t)ides with a selenium atom on the basis that selenium is a chemical isostere of oxygen. These nucleosides are expected to show different physicochemical properties such as better lipophilicity which might enhance the penetration across cell membranes and the conformational constraint induced by a bulky selenium atom in the sugar ring. The 2'-C-methyl-4'-selenopyrimidine and -purine nucleosides 8 and 9 were synthesized from 2-C-methyl-D-ribono-gamma-lactone (14) via construction of 2-C-methyl-D-selenosugar 18 through C-4 epimerization and S(N)2 cyclization with Se e- as key steps. The key 4'-selenosugar was converted to the 2'-C-methyl-4'-selenopyrimidine and -purine nucleosides using Pummerer-type rearrangement and Vorbruggen glycosylation, respectively. In addition, the ProTide strategy has been applied to synthesize the adenine and uracil phosphoramidate derivatives 10a and 1013 to overcome the limitations associated with parent nucleosides such as inefficient conversion to their corresponding 5'-monophosphate form and poor cellular uptake. The regio- and stereochemistry of 4'-selenonucleosides were confirmed by 2D NOESY NMR spectroscopy and X-ray crystallography. None of the final pyrimidine and purine nucleosides and their prodrugs exhibited significant anti-HCV activity up to 100 mu M.
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