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两个保守残基决定了PDZ结构域结合反应的盐依赖性和pH依赖性。

Two conserved residues govern the salt and pH dependencies of the binding reaction of a PDZ domain.

作者信息

Chi Celestine N, Engström Ake, Gianni Stefano, Larsson Mårten, Jemth Per

机构信息

Department of Medical Biochemistry and Microbiology, Uppsala University, Biomedical Center Box 582, SE-75123 Uppsala, Sweden.

出版信息

J Biol Chem. 2006 Dec 1;281(48):36811-8. doi: 10.1074/jbc.M607883200. Epub 2006 Oct 2.

Abstract

PDZ domains are protein-protein interaction modules found in hundreds of human proteins. Their binding reactions are sensitive to variations in salt and pH but the basis of the respective dependence has not been clear. We investigated the binding reaction between PSD-95 PDZ3 and a peptide corresponding to a native ligand with protein engineering in conjunction with stopped-flow and equilibrium fluorimetry and found that the two conserved residues Arg-318 and His-372 were responsible for the salt and pH dependencies, respectively. The basis of the salt-dependent variation of the affinity was explored by mutating all charged residues in and around the peptide-binding pocket. Arg-318 was found to be crucial, as mutation to alanine obliterated the effect of chloride on the binding constants. The direct interaction of chloride with Arg-318 was demonstrated by time-resolved urea denaturation experiments, where the Arg-318 --> Ala mutant was less stabilized by addition of chloride as compared with wild-type PDZ3. We also demonstrated that protonation of His-372 was responsible for the increase of the equilibrium dissociation constant at low pH. Both chloride concentration and pH (during ischemia) vary in the postsynaptic density, where PSD-95 is present, and the physiological buffer conditions may thus modulate the interaction between PSD-95 and its ligands through binding of chloride and protons to the "molecular switches" Arg-318 and His-372, respectively.

摘要

PDZ结构域是在数百种人类蛋白质中发现的蛋白质-蛋白质相互作用模块。它们的结合反应对盐和pH值的变化敏感,但各自依赖性的基础尚不清楚。我们结合停流和平衡荧光测定法,通过蛋白质工程研究了PSD-95 PDZ3与对应于天然配体的肽之间的结合反应,发现两个保守残基Arg-318和His-372分别负责盐依赖性和pH依赖性。通过突变肽结合口袋及其周围的所有带电残基,探索了亲和力的盐依赖性变化的基础。发现Arg-318至关重要,因为突变为丙氨酸消除了氯离子对结合常数的影响。通过时间分辨尿素变性实验证明了氯离子与Arg-318的直接相互作用,与野生型PDZ3相比,加入氯离子后,Arg-318→Ala突变体的稳定性较低。我们还证明了His-372的质子化是低pH值下平衡解离常数增加的原因。在存在PSD-95的突触后致密物中,氯离子浓度和pH值(在缺血期间)都会发生变化,因此生理缓冲条件可能通过氯离子和质子分别与“分子开关”Arg-318和His-372结合来调节PSD-95与其配体之间的相互作用。

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