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首页> 外文期刊>Biophysical Journal >Hierarchical cascades of instability govern the mechanics of coiled coils: Helix unfolding precedes coil unzipping
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Hierarchical cascades of instability govern the mechanics of coiled coils: Helix unfolding precedes coil unzipping

机译:不稳定的分层级联控制线圈的力学:螺旋展开先于线圈解压缩

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摘要

Coiled coils are a fundamental emergent motif in proteins found in structural biomaterials, consisting of α-helical secondary structures wrapped in a supercoil. A fundamental question regarding the thermal and mechanical stability of coiled coils in extreme environments is the sequence of events leading to the disassembly of individual oligomers from the universal coiled-coil motifs. To shed light on this phenomenon, here we report atomistic simulations of a trimeric coiled coil in an explicit water solvent and investigate the mechanisms underlying helix unfolding and coil unzipping in the assembly. We employ advanced sampling techniques involving steered molecular dynamics and metadynamics simulations to obtain the free-energy landscapes of single-strand unfolding and unzipping in a three-stranded assembly. Our comparative analysis of the free-energy landscapes of instability pathways shows that coil unzipping is a sequential process involving multiple intermediates. At each intermediate state, one heptad repeat of the coiled coil first unfolds and then unzips due to the loss of contacts with the hydrophobic core. This observation suggests that helix unfolding facilitates the initiation of coiled-coil disassembly, which is confirmed by our 2D metadynamics simulations showing that unzipping of one strand requires less energy in the unfolded state compared with the folded state. Our results explain recent experimental findings and lay the groundwork for studying the hierarchical molecular mechanisms that underpin the thermomechanical stability/instability of coiled coils and similar protein assemblies.
机译:盘绕线圈是结构生物材料中发现的蛋白质中的基本出现基序,它由包裹在超螺旋中的α螺旋二级结构组成。关于在极端环境下盘绕线圈的热和机械稳定性的一个基本问题是导致单个低聚物从通用盘绕图案中分解的事件序列。为了阐明这种现象,在这里我们报告了三聚体盘绕在明显的水溶剂中的原子模拟,并研究了组件中螺旋展开和盘绕解开的机理。我们采用涉及操纵分子动力学和元动力学模拟的先进采样技术来获得三链组装中单链展开和解链的自由能态。我们对不稳定途径的自由能态的比较分析表明,线圈解压缩是一个涉及多个中间体的顺序过程。在每个中间状态,由于失去与疏水核的接触,卷曲的螺旋的一个七肽重复序列首先展开,然后解压缩。该观察结果表明,螺旋展开有利于盘绕线圈的分解,这一点已通过我们的二维元动力学模拟得到证实,该模拟显示,与折叠状态相比,在展开状态下一根链的拉开所需的能量更少。我们的结果解释了最近的实验发现,并为研究支持盘绕线圈和类似蛋白质装配体的热机械稳定性/不稳定性的分层分子机理奠定了基础。

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