期刊论文详细信息
BIOORGANIC & MEDICINAL CHEMISTRY LETTERS 卷:22
Investigations into specificity of azepinomycin for inhibition of guanase: Discrimination between the natural heterocyclic inhibitor and its synthetic nucleoside analogues
Article
Chakraborty, Saibal1  Shah, Niti H.1  Fishbein, James C.1  Hosmane, Ramachandra S.1 
[1] Univ Maryland Baltimore Cty, Dept Chem & Biochem, Lab Drug Design & Synth, Baltimore, MD 21250 USA
关键词: Synthesis;    Azepinomycin;    Nucleoside analogs;    Biochemical studies;    Inhibition of guanase (Guanine deaminase);    Chiral chromatography;   
DOI  :  10.1016/j.bmcl.2012.09.053
来源: Elsevier
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【 摘 要 】

In our long and broad program to explore structure-activity relationships of the natural product azepinomycin and its analogues for inhibition of guanase, an important enzyme of purine salvage pathway of nucleic acid metabolism, it became necessary to investigate if the nucleoside analogues of the heterocycle azepinomycin, which are likely to be formed in vivo, would be more or less potent than the parent heterocycle. To this end, we have resynthesized both azepinomycin (1) and its two diastereomeric nucleoside analogues (2 and 3), employing a modified, more efficient procedure, and have biochemically screened all three compounds against a mammalian guanase. Our results indicate that the natural product is at least 200 times more potent toward inhibition of guanase as compared with its nucleoside analogues, with the observed K-i of azepinomycin (1) against the rabbit liver guanase = 2.5 (+/- 0.6) x 10 (6) M, while K-i of Compound 2 = 1.19 (+/- 0.02) x 10 (4) M and that of Compound 3 = 1.29 (+/- 0.03) x 10 (4) M. It is also to be noted that while IC50 value of azepinomycin against guanase in cell culture has long been reported, no inhibition studies nor K-i against a pure mammalian enzyme have ever been documented. In addition, we have, for the first time, determined the absolute stereochemistry of the 6-OH group of 2 and 3 using conformational analysis coupled with 2-D H-1 NMR NOESY (C) 2012 Elsevier Ltd. All rights reserved.

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