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PMID: 27723749 已发表 · ppublish 英语

SF2312 is a natural phosphonate inhibitor of enolase.

Nature chemical biology ·第 12 卷 ·第 12 期 ·0000-00-00

Leonard Paul G, Satani Nikunj, Maxwell David, Lin Yu-Hsi, Hammoudi Naima, Peng Zhenghong, Pisaneschi Federica, Link Todd M, Lee Gilbert R, Sun Duoli, Prasad Basvoju A Bhanu, Di Francesco Maria Emilia, Czako Barbara, Asara John M, Wang Y Alan, Bornmann William, DePinho Ronald A, Muller Florian L

摘要

Despite being crucial for energy generation in most forms of life, few if any microbial antibiotics specifically inhibit glycolysis. To develop a specific inhibitor of the glycolytic enzyme enolase 2 (ENO2) for the treatment of cancers with deletion of ENO1 (encoding enolase 1), we modeled the synthetic tool compound inhibitor phosphonoacetohydroxamate (PhAH) into the active site of human ENO2. A ring-stabilized analog of PhAH, in which the hydroxamic nitrogen is linked to Cα by an ethylene bridge, was predicted to increase binding affinity by stabilizing the inhibitor in a bound conformation. Unexpectedly, a structure-based search revealed that our hypothesized backbone-stabilized PhAH bears strong similarity to SF2312, a phosphonate antibiotic of unknown mode of action produced by the actinomycete Micromonospora, which is active under anaerobic conditions. Here, we present multiple lines of evidence, including a novel X-ray structure, that SF2312 is a highly potent, low-nanomolar inhibitor of enolase.

文献信息
期刊
Nature chemical biology
期刊简称
Nat Chem Biol
发表日期
0000-00-00
收录日期
2016-10-10
更新日期
2016-11-23
语言
英语
国家/地区
United States
NLM ID
101231976
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