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定义植物生长素应答中PB1(Phox/Bem1p)结构域相互作用的双管齐下结构模型。

Defining a two-pronged structural model for PB1 (Phox/Bem1p) domain interaction in plant auxin responses.

作者信息

Korasick David A, Chatterjee Srirupa, Tonelli Marco, Dashti Hesam, Lee Soon Goo, Westfall Corey S, Fulton D Bruce, Andreotti Amy H, Amarasinghe Gaya K, Strader Lucia C, Jez Joseph M

机构信息

From the Department of Biology, Washington University, St. Louis, Missouri 63130.

Department of Pathology and Immunology, Washington University School of Medicine, St. Louis, Missouri 63110.

出版信息

J Biol Chem. 2015 May 15;290(20):12868-78. doi: 10.1074/jbc.M115.648253. Epub 2015 Apr 3.

Abstract

Phox/Bem1p (PB1) domains are universal structural modules that use surfaces of different charge for protein-protein association. In plants, PB1-mediated interactions of auxin response factors (ARF) and auxin/indole 3-acetic acid inducible proteins regulate transcriptional events modulated by the phytohormone auxin. Here we investigate the thermodynamic and structural basis for Arabidopsis thaliana ARF7 PB1 domain self-interaction. Isothermal titration calorimetry and NMR experiments indicate that key residues on both the basic and acidic faces of the PB1 domain contribute to and organize coordinately to stabilize protein-protein interactions. Calorimetric analysis of ARF7PB1 site-directed mutants defines a two-pronged electrostatic interaction. The canonical PB1 interaction between a lysine and a cluster of acidic residues provides one prong with an arginine and a second cluster of acidic residues defining the other prong. Evolutionary conservation of this core recognition feature and other co-varying interface sequences allows for versatile PB1-mediated interactions in auxin signaling.

摘要

Phox/Bem1p(PB1)结构域是通用的结构模块,利用不同电荷的表面进行蛋白质-蛋白质结合。在植物中,PB1介导的生长素响应因子(ARF)与生长素/吲哚-3-乙酸诱导蛋白的相互作用调节由植物激素生长素调控的转录事件。在此,我们研究了拟南芥ARF7 PB1结构域自我相互作用的热力学和结构基础。等温滴定量热法和核磁共振实验表明,PB1结构域碱性面和酸性面上的关键残基共同作用并协同组织,以稳定蛋白质-蛋白质相互作用。对ARF7PB1定点突变体的量热分析确定了一种双管齐下的静电相互作用。赖氨酸与一簇酸性残基之间典型的PB1相互作用提供了一个分支,而精氨酸和另一簇酸性残基则定义了另一个分支。这种核心识别特征以及其他共同变化的界面序列的进化保守性,使得PB1在生长素信号传导中能够介导多种相互作用。

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