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在腺苷酸激酶构象变化中底物结合和铰链展开的作用。

On the roles of substrate binding and hinge unfolding in conformational changes of adenylate kinase.

机构信息

Department of Chemistry, University of California, Berkeley, CA, USA.

出版信息

Biophys J. 2010 Nov 17;99(10):3420-9. doi: 10.1016/j.bpj.2010.09.040.

Abstract

We characterized the conformational change of adenylate kinase (AK) between open and closed forms by conducting five all-atom molecular-dynamics simulations, each of 100 ns duration. Different initial structures and substrate binding configurations were used to probe the pathways of AK conformational change in explicit solvent, and no bias potential was applied. A complete closed-to-open and a partial open-to-closed transition were observed, demonstrating the direct impact of substrate-mediated interactions on shifting protein conformation. The sampled configurations suggest two possible pathways for connecting the open and closed structures of AK, affirming the prediction made based on available x-ray structures and earlier works of coarse-grained modeling. The trajectories of the all-atom molecular-dynamics simulations revealed the complexity of protein dynamics and the coupling between different domains during conformational change. Calculations of solvent density and density fluctuations surrounding AK did not show prominent variation during the transition between closed and open forms. Finally, we characterized the effects of local unfolding of an important hinge near Pro(177) on the closed-to-open transition of AK and identified a novel mechanism by which hinge unfolding modulates protein conformational change. The local unfolding of Pro(177) hinge induces alternative tertiary contacts that stabilize the closed structure and prevent the opening transition.

摘要

我们通过进行五次持续 100 纳秒的全原子分子动力学模拟,来描述腺苷酸激酶(AK)在开放和关闭构象之间的构象变化。使用不同的初始结构和底物结合构象来探测 AK 在明溶剂中的构象变化途径,并且没有施加偏置势。观察到完全的关闭到开放和部分的开放到关闭转变,证明了底物介导的相互作用对蛋白质构象转变的直接影响。采样的构象表明 AK 的开放和关闭结构之间可能存在两种连接途径,这证实了基于现有 X 射线结构和早期粗粒化建模工作的预测。全原子分子动力学模拟的轨迹揭示了蛋白质动力学的复杂性以及构象变化过程中不同结构域之间的耦合。在 AK 从关闭形式到开放形式的转变过程中,周围溶剂密度和密度波动的计算没有显示出明显的变化。最后,我们描述了靠近 Pro(177)的一个重要铰链的局部展开对 AK 的关闭到开放转变的影响,并确定了一种新的机制,即铰链展开调节蛋白质构象变化。Pro(177)铰链的局部展开诱导了替代的三级接触,稳定了关闭结构并阻止了开放转变。

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