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A Conformational Switch in the Scaffolding Protein NHERF1 Controls Autoinhibition and Complex Formation

机译:在构架蛋白NHERF1中的构象转换控制自抑制和复杂的形成。

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摘要

The mammalian Na+/H+ exchange regulatory factor 1 (NHERF1) is a multidomain scaffolding protein essential for regulating the intracellular trafficking and macromolecular assembly of transmembrane ion channels and receptors. NHERF1 consists of tandem PDZ-1, PDZ-2 domains that interact with the cytoplasmic domains of membrane proteins and a C-terminal (CT) domain that binds the membrane-cytoskeleton linker protein ezrin. NHERF1 is held in an autoinhibited state through intramolecular interactions between PDZ2 and the CT domain that also includes a C-terminal PDZ-binding motif (-SNL). We have determined the structures of the isolated and tandem PDZ2CT domains by high resolution NMR using small angle x-ray scattering as constraints. The PDZ2CT structure shows weak intramolecular interactions between the largely disordered CT domain and the PDZ ligand binding site. The structure reveals a novel helix-turn-helix subdomain that is allosterically coupled to the putative PDZ2 domain by a network of hydrophobic interactions. This helical subdomain increases both the stability and the binding affinity of the extended PDZ structure. Using NMR and small angle neutron scattering for joint structure refinement, we demonstrate the release of intramolecular domain-domain interactions in PDZ2CT upon binding to ezrin. Based on the structural information, we show that human disease-causing mutations in PDZ2, R153Q and E225K, have significantly reduced protein stability. Loss of NHERF1 expressed in cells could result in failure to assemble membrane complexes that are important for normal physiological functions.
机译:哺乳动物Na + / H + 交换调节因子1(NHERF1)是一种多域支架蛋白,对于调节跨膜离子通道和受体的细胞内运输和大分子组装至关重要。 NHERF1由与膜蛋白胞质结构域相互作用的串联PDZ-1,PDZ-2域和与膜细胞骨架接头蛋白ezrin结合的C端(CT)域组成。 NHERF1通过PDZ2与CT结构域之间的分子内相互作用而保持在自抑制状态,该CT结构域还包括C端PDZ结合基序(-SNL)。我们已经通过使用小角度X射线散射作为约束条件的高分辨率NMR确定了分离的和串联的PDZ2CT域的结构。 PDZ2CT结构显示在很大程度上无序的CT域和PDZ配体结合位点之间的分子内相互作用较弱。该结构揭示了一个新的螺旋-转-螺旋子结构域,该结构域通过疏水相互作用网络与假定的PDZ2结构域变构偶联。该螺旋亚结构域增加了延伸的PDZ结构的稳定性和结合亲和力。使用NMR和小角度中子散射进行联合结构优化,我们证明了结合ezrin后PDZ2CT中分子内域-域相互作用的释放。根据结构信息,我们显示PDZ2,R153Q和E225K的人类致病突变显着降低了蛋白质稳定性。 NHERF1在细胞中表达的缺失可能导致组装膜复合物失败,这对于正常的生理功能很重要。

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