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Roles of native topology and chain-length scaling in protein folding: A simulation study with a Go-like model

机译:天然拓扑和链长缩放在蛋白质折叠中的作用:Go型模型的模拟研究

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摘要

We perform folding simulations on 18 small proteins with using a simple and G (o) over bar -like protein model and analyze the folding rate constants, characteristics of the transition state ensemble, and those of the denatured states in terms of native topology and chain length. Near the folding transition temperature, the folding rate k(F) scales as k(F) similar to exp(-c RCO N-0.6) where RCO and N are the relative contact order and number of residues, respectively. Here the topology RCO dependence of the rates is close to that found experimentally (k(F) similar to exp(-c RCO)), while the chain length N dependence is in harmony with the predicted scaling property (k(F) similar to exp(-c N-2/3)). Thus, this may provides a unified scaling law in folding rates at the transition temperature, k(F) similar to exp(-c RCO N-2/3). The degree of residual structure in the denatured state is highly correlated with RCO, namely, proteins with smaller RCO tend to have more ordered structure in the denatured state. This is consistent with the observation that many helical proteins such as myoglobin and protein A, have partial helices, in the denatured states. The characteristics of the transition state ensemble calculated by the current model, which uses native topology but not sequence specific information, are consistent with experimental phi -value data for about half of proteins.
机译:我们使用简单的G(o)over bar样蛋白质模型对18种小蛋白质进行折叠模拟,并根据天然拓扑和链分析折叠速率常数,过渡态整体特征和变性状态长度。在折叠转变温度附近,折叠速率k(F)缩放为k(F),类似于exp(-c RCO N-0.6),其中RCO和N分别是相对接触顺序和残基数。在这里,速率的拓扑RCO依赖性接近于实验发现的速率(k(F)与exp(-c RCO)相似),而链长N依赖性与预测的缩放性质(k(F)类似于exp(-c N-2 / 3))。因此,这可以在转变温度k(F)处提供类似于exp(-c RCO N-2 / 3)的折叠速率的统一缩放定律。变性状态下的残留结构的程度与RCO高度相关,即,具有较小RCO的蛋白质在变性状态下倾向于具有更有序的结构。这与观察到的一致,即许多螺旋蛋白(如肌红蛋白和蛋白A)在变性状态下具有部分螺旋。由当前模型计算的使用天然拓扑而不使用序列特定信息的过渡状态集合的特征与大约一半蛋白质的实验phi值数据一致。

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