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A unique small molecule inhibitor of enolase clarifies its role in fundamental biological processes

机译:独特的烯醇化酶小分子抑制剂阐明了其在基本生物学过程中的作用

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Enolase is a component of the glycolysis pathway and a " moonlighting" protein, with important roles in diverse cellular processes that are not related to its function in glycolysis. However, small molecule tools to probe enolase function have been restricted to crystallography or enzymology. In this study, we report the discovery of the small molecule "ENOblock", which is the first, nonsubstrate analogue that directly binds to enolase and inhibits its activity. ENOblock was isolated by small molecule screening in a cancer cell assay to detect cytotoxic agents that function in hypoxic conditions, which has previously been shown to induce drug resistance. Further analysis revealed that ENOblock can inhibit cancer cell metastasis in vivo. Moreover, an unexpected role for enolase in glucose homeostasis was revealed by in vivo analysis. Thus, ENOblock is the first reported enolase inhibitor that is suitable for biological assays. This new chemical tool may also be suitable for further study as a cancer and diabetes drug candidate.
机译:烯醇酶是糖酵解途径的组成部分,是一种“月光”蛋白,在多种细胞过程中起着重要作用,而这些过程与其在糖酵解中的功能无关。但是,探测烯醇酶功能的小分子工具仅限于晶体学或酶学。在这项研究中,我们报告了小分子“ ENOblock”的发现,这是第一个直接结合烯醇酶并抑制其活性的非底物类似物。通过在癌细胞分析中进行小分子筛选来分离ENOblock,以检测在低氧条件下起作用的细胞毒剂,以前已证明其可诱导耐药性。进一步的分析表明,ENOblock可以在体内抑制癌细胞的转移。此外,体内分析揭示了烯醇化酶在葡萄糖稳态中的意外作用。因此,ENOblock是第一个报道的烯醇酶抑制剂,适用于生物测定。这种新的化学工具也可能适合作为癌症和糖尿病候选药物进行进一步研究。

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