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天然态氢交换的显式链模型:对蛋白质折叠中事件顺序和协同性的影响。

Explicit-chain model of native-state hydrogen exchange: implications for event ordering and cooperativity in protein folding.

作者信息

Kaya Hüseyin, Chan Hue Sun

机构信息

Department of Biochemistry, Faculty of Medicine, Protein Engineering Network of Centres of Excellence, University of Toronto, Toronto, Ontario M5S 1A8, Canada.

出版信息

Proteins. 2005 Jan 1;58(1):31-44. doi: 10.1002/prot.20286.

Abstract

Native-state hydrogen exchange experiments on several proteins have revealed partially unfolded conformations with diverse stabilities. These equilibrium observations have been used to support kinetic arguments that folding proceeds via a sequential "pathway." This interpretative logic is evaluated here by analyzing the relationship between thermodynamic behavior and folding kinetics in a class of simplified lattice protein models. The chain models studied have varying degrees of cooperative interplay (coupling) between local helical conformational preference and favorable nonlocal interactions. When model cooperativity is high, as native conditions are weakened, "isotherms" of free energy of exchange for residues belonging to the same helix merge together before global unfolding. The point of merger depends on the model energetic favorability of the helix. This trend is similar to the corresponding experimental observations. Kinetically, we find that the ordering of helix formation in the very last stage of native core assembly tends to follow the stabilities of their converged isotherms. In a majority (but not all) of folding trajectories, the final assembly of helices that are thermodynamically more stable against exchange precedes that of helices that are less stable against exchange. These model features are in partial agreement with common experimental interpretations. However, the model results also underscore the ensemble nature of the folding process: the kinetics of helix formation is not a discrete, strictly "all-or-none" process as that envisioned by certain non-explicit-chain models. Helices generally undergo many cycles of partial formation and dissolution before their conformations are fixed in the final assembly stage of folding, a kinetic stage that takes up only approximately 2% of the average folding time in the present model; and the ordering of the helices' final assembly in some trajectories can be different from the dominant ordering stipulated by the exchange isotherms.

摘要

对几种蛋白质进行的天然态氢交换实验揭示了具有不同稳定性的部分未折叠构象。这些平衡观测结果被用来支持动力学观点,即折叠是通过连续的“途径”进行的。本文通过分析一类简化的晶格蛋白质模型中热力学行为与折叠动力学之间的关系,对这种解释逻辑进行了评估。所研究的链模型在局部螺旋构象偏好与有利的非局部相互作用之间具有不同程度的协同相互作用(耦合)。当模型协同性较高时,随着天然条件的减弱,属于同一螺旋的残基的交换自由能“等温线”在全局展开之前会合并在一起。合并点取决于螺旋的模型能量有利性。这种趋势与相应的实验观测结果相似。在动力学方面,我们发现在天然核心组装的最后阶段螺旋形成的顺序倾向于遵循其收敛等温线的稳定性。在大多数(但不是所有)折叠轨迹中,对交换热力学上更稳定的螺旋的最终组装先于对交换较不稳定的螺旋的组装。这些模型特征与常见的实验解释部分一致。然而,模型结果也强调了折叠过程的系综性质:螺旋形成的动力学不是某些非显式链模型所设想的离散的、严格“全或无”的过程。在其构象在折叠的最终组装阶段固定之前,螺旋通常会经历许多部分形成和溶解的循环,在本模型中,这个动力学阶段仅占平均折叠时间的约2%;并且在某些轨迹中螺旋最终组装的顺序可能与交换等温线规定的主导顺序不同。

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