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A Specific Mechanism of Nonspecific Inhibition

机译:非特异性抑制的特定机制

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Promiscuous small molecules plague screening libraries and hit lists. Previous work has found that several nonspecific compounds form submicrometer aggregates, and it has been suggested that this aggregate species is responsible for the inhibition of many different enzymes. It is not understood how aggregates inhibit their targets. To address this question, biophysical, kinetic, and microscopy methods were used to study the interaction of promiscuous, aggregate-forming inhibitors with model proteins. By use of centrifugation and gel electrophoresis, aggregates and protein were found to directly interact. This is consistent with a subsequent observation from confocal fluorescence microscopy that aggregates concentrate green fluorescent protein. β-Lactamase mutants with increased or decreased thermodynamic stability relative to wild-type enzyme were equally inhibited by an aggregate-forming compound, suggesting that denaturation by unfolding was not the primary mechanism of interaction. Instead, visualization by electron microscopy revealed that enzyme associates with the surface of inhibitor aggregates. This association could be reversed or prevented by the addition of Triton X-100. These observations suggest that the aggregates formed by promiscuous compounds reversibly sequester enzyme, resulting in apparent inhibition. They also suggest a simple method to identify or reverse the action of aggregate-based inhibitors, which appear to be widespread.
机译:混杂的小分子困扰着筛选库和命中列表。先前的工作已经发现几种非特异性化合物形成亚微米聚集体,并且已经表明该聚集体物种负责抑制许多不同的酶。尚不清楚聚集体如何抑制其目标。为了解决这个问题,使用了生物物理,动力学和显微镜方法来研究混杂的,聚集体形成抑制剂与模型蛋白的相互作用。通过离心和凝胶电泳,发现聚集体和蛋白质直接相互作用。这与共聚焦荧光显微镜的后续观察结果一致,即聚集了浓缩的绿色荧光蛋白。相对于野生型酶,具有增加或减少的热力学稳定性的β-内酰胺酶突变体同样受到聚集物形成化合物的抑制,这表明通过解折叠变性不是相互作用的主要机理。取而代之的是,通过电子显微镜观察发现,酶与抑制剂聚集体表面缔合。加入Triton X-100可以逆转或阻止这种关联。这些观察结果表明,混杂化合物形成的聚集体可逆地螯合酶,导致明显的抑制作用。他们还提出了一种简单的方法来鉴定或逆转似乎很普遍的基于聚集体的抑制剂的作用。

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