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Predicting repeat protein folding kinetics from an experimentally determined folding energy landscape.

机译:从实验确定的折叠能态预测重复蛋白质折叠动力学。

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摘要

The Notch ankyrin domain is a repeat protein whose folding has been characterized through equilibrium and kinetic measurements. In previous work, equilibrium folding free energies of truncated constructs were used to generate an experimentally determined folding energy landscape (Mello and Barrick, Proc Natl Acad Sci USA 2004;101:14102-14107). Here, this folding energy landscape is used to parameterize a kinetic model in which local transition probabilities between partly folded states are based on energy values from the landscape. The landscape-based model correctly predicts highly diverse experimentally determined folding kinetics of the Notch ankyrin domain and sequence variants. These predictions include monophasic folding and biphasic unfolding, curvature in the unfolding limb of the chevron plot, population of a transient unfolding intermediate, relative folding rates of 19 variants spanning three orders of magnitude, and a change in the folding pathway that results from C-terminal stabilization.These findings indicate that the folding pathway(s) of the Notch ankyrin domain are thermodynamically selected: the primary determinants of kinetic behavior can be simply deduced from the local stability of individual repeats.
机译:Notch锚蛋白结构域是重复蛋白,其折叠已通过平衡和动力学测量进行了表征。在以前的工作中,截短构建体的平衡折叠自由能被用于生成实验确定的折叠能态(Mello和Barrick,Proc Natl Acad Sci USA 2004; 101:14102-14107)。在此,此折叠能量格局用于对动力学模型进行参数化,其中部分折叠状态之间的局部转变概率基于该格局的能量值。基于景观的模型可以正确预测Notch锚蛋白结构域和序列变异的高度多样化的实验确定的折叠动力学。这些预测包括单相折叠和双相展开,V形图展开边缘的曲率,瞬态展开中间体的种群,跨越三个数量级的19个变体的相对折叠率以及C-引起的折叠途径变化这些发现表明Notch锚蛋白结构域的折叠途径是热力学选择的:动力学行为的主要决定因素可以简单地从单个重复序列的局部稳定性中推导出来。

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