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分子钳调节 14-3-3 蛋白-蛋白相互作用。

Molecular tweezers modulate 14-3-3 protein-protein interactions.

机构信息

Chemical Genomics Centre of the Max-Planck-Society, Otto-Hahn-Strasse 15, 44227 Dortmund, Germany.

出版信息

Nat Chem. 2013 Mar;5(3):234-9. doi: 10.1038/nchem.1570. Epub 2013 Feb 17.

Abstract

Supramolecular chemistry has recently emerged as a promising way to modulate protein functions, but devising molecules that will interact with a protein in the desired manner is difficult as many competing interactions exist in a biological environment (with solvents, salts or different sites for the target biomolecule). We now show that lysine-specific molecular tweezers bind to a 14-3-3 adapter protein and modulate its interaction with partner proteins. The tweezers inhibit binding between the 14-3-3 protein and two partner proteins--a phosphorylated (C-Raf) protein and an unphosphorylated one (ExoS)--in a concentration-dependent manner. Protein crystallography shows that this effect arises from the binding of the tweezers to a single surface-exposed lysine (Lys214) of the 14-3-3 protein in the proximity of its central channel, which normally binds the partner proteins. A combination of structural analysis and computer simulations provides rules for the tweezers' binding preferences, thus allowing us to predict their influence on this type of protein-protein interactions.

摘要

超分子化学最近成为一种有前途的调节蛋白质功能的方法,但是设计出以所需方式与蛋白质相互作用的分子是困难的,因为在生物环境中存在许多竞争相互作用(与溶剂、盐或靶生物分子的不同位点)。我们现在表明,赖氨酸特异性分子夹与 14-3-3 衔接蛋白结合,并调节其与伴侣蛋白的相互作用。分子夹以浓度依赖的方式抑制 14-3-3 蛋白与两种伴侣蛋白(磷酸化(C-Raf)蛋白和非磷酸化蛋白(ExoS))之间的结合。蛋白质晶体学表明,这种效应源于夹与 14-3-3 蛋白表面暴露的单个赖氨酸(Lys214)的结合,该赖氨酸靠近其中心通道,该通道通常与伴侣蛋白结合。结构分析和计算机模拟的组合提供了夹结合偏好的规则,从而使我们能够预测它们对这种类型的蛋白质-蛋白质相互作用的影响。

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