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首页> 外文期刊>Journal of Molecular Biology >Controllable Activation of Nanoscale Dynamics in a Disordered Protein Alters Binding Kinetics
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Controllable Activation of Nanoscale Dynamics in a Disordered Protein Alters Binding Kinetics

机译:无序蛋白中纳米级动力学的可控激活改变了结合动力学

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The phosphorylation of specific residues in a flexible disordered activation loop yields precise control of signal transduction. One paradigm is the phosphorylation of S339/S340 in the intrinsically disordered tail of the multi-domain scaffolding protein NHERF1, which affects the intracellular localization and trafficking of NHERF1 assembled signaling complexes. Using neutron spin echo spectroscopy (NSE), we show salt-concentration-dependent excitation of nanoscale motion at the tip of the C-terminal tail in the phosphomimic S339D/S340D mutant. The "tip of the whip" that is unleashed is near the S339/S340 phosphorylation site and flanks the hydrophobic Ezrin-binding motif. The kinetic association rate constant of the binding of the S339D/S340D mutant to the FERM domain of Ezrin is sensitive to buffer salt concentration, correlating with the excited nanoscale dynamics. The results suggest that electrostatics modulates the activation of nanoscale dynamics of an intrinsically disordered protein, controlling the binding kinetics of signaling partners. NSE can pinpoint the nanoscale dynamics changes in a highly specific manner. (C) 2017 Elsevier Ltd. All rights reserved.
机译:柔性无序活化环中特定残基的磷酸化产生了对信号转导的精确控制。一种范例是S339 / S340在多域支腿蛋白NHERF1的本质无序尾部中的磷酸化,这影响了内部定位和贩运了NHERF1组装的信号配合物。采用中子旋转回波光谱(NSE),我们在磷酸淀粉样液S339D / S340D突变体中显示纳米末尾尖端的纳米级运动的含盐浓度依赖性激发。释放的“鞭尖”在S339 / S340磷酸化位点附近,侧翼疏水性Ezrin结合基序。 S339D / S340D突变体与Ezrin的FerM结构域的结合的动力学缔合率常数对缓冲盐浓度敏感,与激发的纳米级动力学相关。结果表明,静电学调节了本质无序蛋白质的纳米级动力学的激活,控制信号伴侣的结合动力学。 NSE可以以高度特定的方式确定纳米级动力学的变化。 (c)2017 Elsevier Ltd.保留所有权利。

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