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Molecular basis for the high-affinity binding and stabilization of firefly luciferase by PTC124

机译:PTC124萤火虫荧光素酶高亲和力结合和稳定化的分子基础

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摘要

Firefly luciferase (FLuc), an ATP-dependent bioluminescent reporter enzyme, is broadly used in chemical biology and drug discovery assays. PTC124 (Ataluren; (3-[5-(2-fluorophenyl)-1,2,4-oxadiazol-3-yl]benzoic acid) discovered in an FLuc-based assay targeting nonsense codon suppression, is an unusually potent FLuc-inhibitor. Paradoxically, PTC124 and related analogs increase cellular FLuc activity levels by posttranslational stabilization. In this study, we show that FLuc inhibition and stabilization is the result of an inhibitory product formed during the FLuc-catalyzed reaction between its natural substrate, ATP, and PTC124. A 2.0 Å cocrystal structure revealed the inhibitor to be the acyl-AMP mixed-anhydride adduct PTC124-AMP, which was subsequently synthesized and shown to be a high-affinity multisubstrate adduct inhibitor (MAI; KD = 120 pM) of FLuc. Biochemical assays, liquid chromatography/mass spectrometry, and near-attack conformer modeling demonstrate that formation of this novel MAI is absolutely dependent upon the precise positioning and reactivity of a key meta-carboxylate of PTC124 within the FLuc active site. We also demonstrate that the inhibitory activity of PTC124-AMP is relieved by free coenzyme A, a component present at high concentrations in luciferase detection reagents used for cell-based assays. This explains why PTC124 can appear to increase, instead of inhibit, FLuc activity in cell-based reporter gene assays. To our knowledge, this is an unusual example in which the “off-target” effect of a small molecule is mediated by an MAI mechanism.
机译:萤火虫荧光素酶(FLuc)是一种ATP依赖的生物发光报告酶,广泛用于化学生物学和药物发现试验。在针对无意义密码子抑制的基于FLuc的测定中发现的PTC124(Ataluren;(3- [5-(2-氟苯基)-1,2,4-恶二唑-3-基]苯甲酸)是一种非常有效的FLuc抑制剂矛盾的是,PTC124及其相关类似物通过翻译后稳定作用提高了细胞FLuc的活性水平,在这项研究中,我们表明FLuc的抑制和稳定作用是FLuc催化其天然底物,ATP和PTC124之间反应形成的抑制产物的结果。 。2.0Å共晶结构显示该抑制剂为酰基-AMP混合酸酐加合物PTC124-AMP,随后合成,显示为FLuc的高亲和性多底物加合物抑制剂(MAI; KD = 120 pM)。分析,液相色谱/质谱和接近攻击构象建模表明,这种新型MAI的形成绝对取决于PTC124关键键羧酸在FLuc活性位点内的精确定位和反应性。我们还证明了游离辅酶A可减轻PTC124-AMP的抑制活性,游离辅酶A是用于基于细胞的测定的萤光素酶检测试剂中高浓度存在的组分。这解释了为什么在基于细胞的报告基因检测中,PTC124似乎可以增加而不是抑制FLuc活性。据我们所知,这是一个不寻常的例子,其中小分子的“脱靶”效应是通过MAI机制介导的。

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