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Binding of intrinsically disordered proteins is not necessarily accompanied by a structural transition to a folded form

机译:内在无序蛋白的结合不一定伴随着结构转变为折叠形式

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摘要

There are a large number of protein domains and even entire proteins, lacking ordered structure under physiological conditions. Intriguingly, a highly flexible, random coil-like conformation is the native and functional state for many proteins known to be involved in cell signaling. An example is a key component of immune signaling, the cytoplasmic region of the T cell receptor ζ subunit. This domain exhibits specific dimer-ization that is distinct from non-specific aggregation behavior seen in many systems. In this work, we use diffusion and chemical shift mapping NMR data to show that the protein does not undergo a transition between disordered and ordered states upon dimerization. This finding opposes the generally accepted view on the behavior of intrinsically disordered proteins, provides evidence for the existence of specific dimerization interactions for intrinsically disordered protein species and opens a new line of research in this new and quickly developing field.
机译:在生理条件下,存在大量的蛋白质结构域甚至整个蛋白质,缺乏有序的结构。有趣的是,对于许多已知参与细胞信号转导的蛋白质来说,高度灵活的,随机的线圈状构象是其天然和功能状态。一个例子是免疫信号传导的关键组成部分,即T细胞受体ζ亚基的胞质区域。该域展现出特定的二聚化,这不同于许多系统中看到的非特定的聚集行为。在这项工作中,我们使用扩散和化学位移映射NMR数据来显示该蛋白质在二聚化时不会在无序状态和有序状态之间发生转变。这一发现与人们普遍接受的关于内在无序蛋白的行为的观点相反,为内在无序蛋白物种存在特定的二聚化相互作用提供了证据,并在这个迅速发展的新领域开辟了新的研究领域。

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