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Native Contact Density and Nonnative Hydrophobic Effects in the Folding of Bacterial Immunity Proteins

机译:细菌免疫蛋白折叠中的天然接触密度和非天然疏水作用。

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摘要

The bacterial colicin-immunity proteins Im7 and Im9 fold by different mechanisms. Experimentally, at pH 7.0 and 10°C, Im7 folds in a three-state manner via an intermediate but Im9 folding is two-state-like. Accordingly, Im7 exhibits a chevron rollover, whereas the chevron arm for Im9 folding is linear. Here we address the biophysical basis of their different behaviors by using native-centric models with and without additional transferrable, sequence-dependent energies. The Im7 chevron rollover is not captured by either a pure native-centric model or a model augmented by nonnative hydrophobic interactions with a uniform strength irrespective of residue type. By contrast, a more realistic nonnative interaction scheme that accounts for the difference in hydrophobicity among residues leads simultaneously to a chevron rollover for Im7 and an essentially linear folding chevron arm for Im9. Hydrophobic residues identified by published experiments to be involved in nonnative interactions during Im7 folding are found to participate in the strongest nonnative contacts in this model. Thus our observations support the experimental perspective that the Im7 folding intermediate is largely underpinned by nonnative interactions involving large hydrophobics. Our simulation suggests further that nonnative effects in Im7 are facilitated by a lower local native contact density relative to that of Im9. In a one-dimensional diffusion picture of Im7 folding with a coordinate- and stability-dependent diffusion coefficient, a significant chevron rollover is consistent with a diffusion coefficient that depends strongly on native stability at the conformational position of the folding intermediate.
机译:细菌大肠菌素免疫蛋白Im7和Im9通过不同的机制折叠。实验上,在pH 7.0和10°C下,Im7经由中间体以三态折叠,而Im9折叠为两态折叠。因此,Im7呈现人字形翻转,而用于Im9折叠的人字形臂是线性的。在这里,我们通过使用以自然为中心的模型来研究它们不同行为的生物物理基础,该模型带有或不带有其他可转移的,依赖序列的能量。单纯的以自然为中心的模型或通过具有均匀强度的非原生疏水相互作用增强的模型(无论残基类型如何)都无法捕获Im7人字形翻转。相比之下,解决残基之间疏水性差异的更现实的非天然相互作用方案会同时导致Im7的人字形翻转和Im9的基本上线性的折叠人字形臂。通过公开的实验确定的疏水残基参与了Im7折叠过程中的非天然相互作用,被发现参与了该模型中最强的非天然接触。因此,我们的观察结果支持了Im7折叠中间体在很大程度上受涉及大疏水性的非天然相互作用的实验支持。我们的模拟进一步表明,相对于Im9而言,较低的本地自然接触密度可促进Im7中的非自然效应。在具有依赖于坐标和稳定性的扩散系数的Im7折叠的一维扩散图中,明显的V形翻转与扩散系数一致,该扩散系数在很大程度上取决于折叠中间体构象位置的天然稳定性。

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