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基于集合的 PSD-95 PDZ3 结构域动态变构与 PDZ 结构普遍变异性的关系分析。

Ensemble-Based Analysis of the Dynamic Allostery in the PSD-95 PDZ3 Domain in Relation to the General Variability of PDZ Structures.

机构信息

Faculty of Information Technology and Bionics, Pázmány Péter Catholic University, Práter u. 50/A, 1083 Budapest, Hungary.

3in-PPCU Research Group, 2500 Esztergom, Hungary.

出版信息

Int J Mol Sci. 2020 Nov 6;21(21):8348. doi: 10.3390/ijms21218348.

Abstract

PDZ domains are abundant interaction hubs found in a number of different proteins and they exhibit characteristic differences in their structure and ligand specificity. Their internal dynamics have been proposed to contribute to their biological activity changes in conformational entropy upon ligand binding and allosteric modulation. Here we investigate dynamic structural ensembles of PDZ3 of the postsynaptic protein PSD-95, calculated based on previously published backbone and side-chain S2 order parameters. We show that there are distinct but interdependent structural rearrangements in PDZ3 upon ligand binding and the presence of the intramolecular allosteric modulator helix α3. We have also compared these rearrangements in PDZ1-2 of PSD-95 and the conformational diversity of an extended set of PDZ domains available in the PDB database. We conclude that although the opening-closing rearrangement, occurring upon ligand binding, is likely a general feature for all PDZ domains, the conformer redistribution upon ligand binding along this mode is domain-dependent. Our findings suggest that the structural and functional diversity of PDZ domains is accompanied by a diversity of internal motional modes and their interdependence.

摘要

PDZ 结构域是在许多不同蛋白质中发现的丰富的相互作用中心,它们在结构和配体特异性方面表现出特征性差异。它们的内部动力学被认为有助于它们的生物活性——配体结合和变构调节引起的构象熵变化。在这里,我们根据先前发表的骨架和侧链 S2 序参数,研究了突触后蛋白 PSD-95 的 PDZ3 的动态结构集合。我们表明,在配体结合和分子内变构调节剂α3 螺旋存在的情况下,PDZ3 中存在明显但相互依存的结构重排。我们还比较了 PSD-95 的 PDZ1-2 中的这些重排以及 PDB 数据库中可用的扩展 PDZ 结构域的构象多样性。我们的结论是,尽管配体结合时发生的开闭重排可能是所有 PDZ 结构域的一般特征,但沿此模式结合配体时的构象再分配是结构域依赖性的。我们的研究结果表明,PDZ 结构域的结构和功能多样性伴随着内部运动模式的多样性及其相互依赖性。

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