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通过晶格捕获捕捉到的NHERF1-CXCR2信号复合物的新构象状态。

New conformational state of NHERF1-CXCR2 signaling complex captured by crystal lattice trapping.

作者信息

Jiang Yuanyuan, Lu Guorong, Trescott Laura R, Hou Yuning, Guan Xiaoqing, Wang Shuo, Stamenkovich Angelique, Brunzelle Joseph, Sirinupong Nualpun, Li Chunying, Yang Zhe

机构信息

Department of Biochemistry and Molecular Biology, Wayne State University School of Medicine, Detroit, Michigan, United States of America.

出版信息

PLoS One. 2013 Dec 10;8(12):e81904. doi: 10.1371/journal.pone.0081904. eCollection 2013.

Abstract

NHERF1 is a PDZ adaptor protein that scaffolds the assembly of diverse signaling complexes and has been implicated in many cancers. However, little is known about the mechanism responsible for its scaffolding promiscuity or its ability to bind to multiple targets. Computational studies have indicated that PDZ promiscuity may be attributed to its conformational dynamics, but experimental evidence for this relationship remains very limited. Here we examine the conformational flexibility of the NHERF1 PDZ1 domain using crystal lattice trapping via solving PDZ1 structure of a new crystal form. The structure, together with prior PDZ1 structures of a different space group, reveals that 4 of 11 ligand-interacting residues undergo significant crystal packing-induced structural changes. Most of these residues correspond to the residues involved in allosteric transition when a peptide ligand binds. In addition, a subtle difference in ligand conformations causes the same peptide to bind in slightly different modes in different crystal forms. These findings indicate that substantial structural flexibility is present in the PDZ1 peptide-binding pocket, and the structural substate trapped in the present crystal form can be utilized to represent the conformational space accessible to the protein. Such knowledge will be critical for drug design against the NHERF1 PDZ1 domain, highlighting the continued need for experimentally determined PDZ1-ligand complexes.

摘要

NHERF1是一种PDZ衔接蛋白,它能搭建多种信号复合物的组装,并且与多种癌症有关。然而,对于其搭建混杂性或与多个靶点结合能力的机制,我们知之甚少。计算研究表明,PDZ混杂性可能归因于其构象动力学,但这种关系的实验证据仍然非常有限。在这里,我们通过解析一种新晶型的PDZ1结构,利用晶格捕获来研究NHERF1 PDZ1结构域的构象灵活性。该结构与不同空间群的先前PDZ1结构一起表明,11个与配体相互作用的残基中有4个经历了显著的晶体堆积诱导的结构变化。这些残基中的大多数对应于肽配体结合时参与变构转变的残基。此外,配体构象的细微差异导致相同的肽在不同晶型中以略有不同的模式结合。这些发现表明,PDZ1肽结合口袋中存在大量的结构灵活性,并且目前晶型中捕获的结构亚态可用于代表蛋白质可及的构象空间。这些知识对于针对NHERF1 PDZ1结构域的药物设计至关重要,突出了对实验确定的PDZ1-配体复合物的持续需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7190/3858284/fcdfabacea41/pone.0081904.g001.jpg

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