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静电力控制无序蛋白质开关中的负别构调节。

Electrostatic Forces Control the Negative Allosteric Regulation in a Disordered Protein Switch.

作者信息

Wang Yanming, Brooks Iii Charles L

出版信息

J Phys Chem Lett. 2020 Feb 6;11(3):864-868. doi: 10.1021/acs.jpclett.9b03618. Epub 2020 Jan 22.

Abstract

The transcriptional adaptor zinc-binding 1 (TAZ1) domain of the transcriptional coactivator CBP/P300 and two disordered peptides, HIF-1α and CITED2, form a delicate protein switch that regulates cellular hypoxic response. In hypoxia, HIF-1α binds TAZ1 to control the transcription of adaptive genes critical for the recovery from hypoxic stress. CITED2 acts as the negative feedback regulator to rapidly displace HIF-1α and efficiently attenuate the hypoxic response. Though CITED2 and HIF-1α have the same dissociation constant ( = 10 nM) in their binary complexes with TAZ1, CITED2 is much more competitive than HIF-1α upon binding the same target TAZ1 in ternary ( Berlow et al. 2017 , 543 , 447 - 451 ). Here we demonstrate that a simple coarse-grained model can recapitulate this negative allosteric effect and provide detailed physical insights into the displacement mechanism. We find that long-range electrostatic forces are essential for the efficient displacement of HIF-1α by CITED2. The strong electrostatic interactions between CITED2 and TAZ1, along with the unique binding mode, make CITED2 much more competitive than HIF-1α in binding TAZ1.

摘要

转录共激活因子CBP/P300的转录衔接子锌结合1(TAZ1)结构域与两条无序肽HIF-1α和CITED2形成了一个精细的蛋白质开关,该开关调节细胞的低氧反应。在低氧状态下,HIF-1α与TAZ1结合,以控制对从低氧应激中恢复至关重要的适应性基因的转录。CITED2作为负反馈调节因子,可迅速取代HIF-1α并有效减弱低氧反应。尽管CITED2和HIF-1α与TAZ1形成的二元复合物具有相同的解离常数( = 10 nM),但在三元复合物中与同一靶标TAZ1结合时,CITED2比HIF-1α更具竞争力(Berlow等人,2017年,543卷,447 - 451页)。在此,我们证明了一个简单的粗粒度模型可以概括这种负别构效应,并为取代机制提供详细的物理见解。我们发现,远程静电力对于CITED2有效取代HIF-1α至关重要。CITED2与TAZ1之间强烈的静电相互作用以及独特的结合模式,使得CITED2在结合TAZ1时比HIF-1α更具竞争力。

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