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NOS1AP C 末端与 nNOS PDZ 口袋的有效结合需要 PDZ 配体基序、内部 ExF 位点以及一个独立元件的结构完整性的协同作用。

Efficient Binding of the NOS1AP C-Terminus to the nNOS PDZ Pocket Requires the Concerted Action of the PDZ Ligand Motif, the Internal ExF Site and Structural Integrity of an Independent Element.

作者信息

Li Li-Li, Cisek Katryna, Courtney Michael J

机构信息

Molecular Signalling Laboratory, Department of Neurobiology, A. I. Virtanen Institute, University of Eastern FinlandKuopio, Finland; Neuronal Signalling Laboratory, Turku Centre for Biotechnology, University of TurkuTurku, Finland.

Molecular Signalling Laboratory, Department of Neurobiology, A. I. Virtanen Institute, University of Eastern Finland Kuopio, Finland.

出版信息

Front Mol Neurosci. 2017 Mar 15;10:58. doi: 10.3389/fnmol.2017.00058. eCollection 2017.

Abstract

Neuronal nitric oxide synthase is widely regarded as an important contributor to a number of disorders of excitable tissues. Recently the adaptor protein NOS1AP has emerged as a contributor to several nNOS-linked conditions. As a consequence, the unexpectedly complex mechanisms of interaction between nNOS and its effector NOS1AP have become a particularly interesting topic from the point of view of both basic research and the potential for therapeutic applications. Here we demonstrate that the concerted action of two previously described motif regions contributing to the interaction of nNOS with NOS1AP, the ExF region and the PDZ ligand motif, efficiently excludes an alternate ligand from the nNOS-PDZ ligand-binding pocket. Moreover, we identify an additional element with a denaturable structure that contributes to interaction of NOS1AP with nNOS. Denaturation does not affect the functions of the individual motifs and results in a relatively mild drop, ∼3-fold, of overall binding affinity of the C-terminal region of NOS1AP for nNOS. However, denaturation selectively prevents the concerted action of the two motifs that normally results in efficient occlusion of the PDZ ligand-binding pocket, and results in 30-fold reduction of competition between NOS1AP and an alternate PDZ ligand.

摘要

神经元型一氧化氮合酶被广泛认为是导致多种可兴奋组织疾病的重要因素。最近,衔接蛋白NOS1AP已成为与几种nNOS相关病症的一个影响因素。因此,从基础研究和治疗应用潜力的角度来看,nNOS与其效应器NOS1AP之间出人意料的复杂相互作用机制已成为一个特别有趣的话题。在这里,我们证明了两个先前描述的有助于nNOS与NOS1AP相互作用的基序区域,即ExF区域和PDZ配体基序的协同作用,有效地将另一种配体排除在nNOS-PDZ配体结合口袋之外。此外,我们鉴定出一个具有可变性结构的额外元件,它有助于NOS1AP与nNOS的相互作用。变性并不影响各个基序的功能,并且导致NOS1AP C末端区域对nNOS的整体结合亲和力相对温和地下降,约为3倍。然而,变性选择性地阻止了通常导致PDZ配体结合口袋有效封闭的两个基序的协同作用,并导致NOS1AP与另一种PDZ配体之间的竞争降低30倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23a2/5350102/2ad9fd74152d/fnmol-10-00058-g001.jpg

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