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Siderocalin Q83 exhibits differential slow dynamics upon ligand binding

机译:配铁结合后,铁氧花青素Q83表现出不同的慢动力学

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摘要

Siderocalin Q83 is a small soluble protein that has the ability to bind two different ligands (enterobactin and arachidonic acid) simultaneously in two distinct binding sites. Here we report that Q83 exhibits an intriguing dynamic behavior. In its free form, the protein undergoes significant micro-to-millisecond dynamics. When binding arachidonic acid, the motions of the arachidonic acid binding site are quenched while the dynamics at the enterobactin binding site increases. Reciprocally, enterobactin binding to Q83 quenches the motions at the enterobactin binding site and increases the slow dynamics at the arachidonic acid binding site. Additionally, in the enterobactin-bound state, the excited state of the arachidonic acid binding site resembles the arachidonic acid-bound state. These observations strongly suggest an allosteric regulation where binding of one ligand enhances the affinity of Q83 for the other one. Additionally, our data strengthen the emerging view of proteins as dynamic ensembles interconverting between different sub-states with distinct functionalities.
机译:Siderocalin Q83是一种小的可溶性蛋白质,具有在两个不同的结合位点同时结合两个不同的配体(肠杆菌素和花生四烯酸)的能力。在这里,我们报告Q83表现出有趣的动态行为。蛋白质以其游离形式经历显着的微毫秒级动力学。当结合花生四烯酸时,花生四烯酸结合位点的运动被猝灭,而肠杆菌素结合位点的动力学增加。相反,肠杆菌素与Q83的结合会终止肠杆菌素结合位点的运动,并增加花生四烯酸结合位点的缓慢动力学。另外,在肠杆菌素结合状态下,花生四烯酸结合位点的激发态类似于花生四烯酸结合态。这些观察结果强烈暗示一种变构调节,其中一种配体的结合增强了Q83对另一种配体的亲和力。此外,我们的数据加强了蛋白质的新兴观点,因为动态集合体在具有不同功能的不同亚状态之间相互转换。

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