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SF2312是烯醇化酶的一种天然膦酸酯抑制剂。

SF2312 is a natural phosphonate inhibitor of enolase.

作者信息

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

机构信息

Department of Genomic Medicine and Core for Biomolecular Structure and Function, University of Texas MD Anderson Cancer Center, Houston, TX 77054.

Department of Cancer Systems Imaging, University of Texas MD Anderson Cancer Center, Houston, TX 77054.

出版信息

Nat Chem Biol. 2016 Dec;12(12):1053-1058. doi: 10.1038/nchembio.2195. Epub 2016 Oct 10.

Abstract

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.

摘要

尽管糖酵解对大多数生命形式的能量产生至关重要,但几乎没有微生物抗生素能特异性抑制糖酵解。为了开发一种糖酵解酶烯醇化酶2(ENO2)的特异性抑制剂,用于治疗缺失ENO1(编码烯醇化酶1)的癌症,我们将合成工具化合物抑制剂膦酰基乙酰异羟肟酸(PhAH)模拟到人ENO2的活性位点中。一种PhAH的环稳定类似物,其中异羟肟酸氮通过乙烯桥与Cα相连,预计通过将抑制剂稳定在结合构象中来增加结合亲和力。出乎意料的是,基于结构的搜索显示,我们假设的主链稳定化PhAH与SF2312具有很强的相似性,SF2312是一种由放线菌小单孢菌产生的作用方式未知的膦酸盐抗生素,在厌氧条件下具有活性。在这里,我们提供了多条证据,包括一种新的X射线结构,证明SF2312是烯醇化酶的一种高效、低纳摩尔抑制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b64a/5110371/fab537e5a65e/nihms-807909-f0001.jpg

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