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通过结构域交换实现蛋白质寡聚化:分子间相互作用和蛋白质浓度的作用

Protein oligomerization through domain swapping: role of inter-molecular interactions and protein concentration.

作者信息

Yang Sichun, Levine Herbert, Onuchic José N

机构信息

Center for Theoretical Biological Physics and Department of Physics, University of California San Diego, La Jolla, CA 92093-0374, USA.

出版信息

J Mol Biol. 2005 Sep 9;352(1):202-11. doi: 10.1016/j.jmb.2005.06.062.

Abstract

Domain swapping has been shown to be an important mechanism controlling multiprotein assembly and has been suggested recently as a possible mechanism underlying protein aggregation. Understanding oligomerization via domain swapping is therefore of theoretical and practical importance. By using a symmetrized structure-based (Gō) model, we demonstrate that in the free-energy landscape of domain swapping, a large free-energy barrier separates monomeric and domain-swapped dimeric configurations. We investigate the effect of finite monomer concentration, by implementing a new semi-analytical method, which involves computing the second virial coefficient, a thermodynamic indicator of inter-molecular interactions. This method, together with the symmetrized structure-based (Gō) model, minimizes the need for expensive many-protein simulations, providing a convenient framework to investigate concentration effect. Finally, we perform direct simulations of domain-swapped trimer formation, showing that this modeling approach can be used for higher-order oligomers.

摘要

结构域交换已被证明是控制多蛋白组装的重要机制,最近有人提出它可能是蛋白质聚集的潜在机制。因此,通过结构域交换来理解寡聚化具有理论和实际意义。通过使用基于对称结构的(Gō)模型,我们证明在结构域交换的自由能景观中,一个大的自由能屏障将单体和结构域交换的二聚体构型分开。我们通过实施一种新的半解析方法来研究有限单体浓度的影响,该方法涉及计算第二维里系数,这是分子间相互作用的热力学指标。这种方法与基于对称结构的(Gō)模型一起,最大限度地减少了对昂贵的多蛋白模拟的需求,提供了一个方便的框架来研究浓度效应。最后,我们对结构域交换的三聚体形成进行了直接模拟,表明这种建模方法可用于高阶寡聚体。

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