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基于动态规划方法的螺旋束统计力学。

Statistical mechanics of helix bundles using a dynamic programming approach.

作者信息

Lucas Adam, Huang Liang, Joshi Aravind, Dill Ken A

机构信息

Department of Mathematics, Saint Mary's College of California, Moraga, California 94575-3517, USA.

出版信息

J Am Chem Soc. 2007 Apr 11;129(14):4272-81. doi: 10.1021/ja067153s. Epub 2007 Mar 16.

Abstract

Despite much study, biomolecule folding cooperativity is not well understood. There are quantitative models for helix-coil transitions and for coil-to-globule transitions, but no accurate models yet treat both chain collapse and secondary structure formation together. We develop here a dynamic programming approach to statistical mechanical partition functions of foldamer chain molecules. We call it the ascending levels model. We apply it to helix-coil and helix-bundle folding and cooperativity. For 14- to 50-mer Baldwin peptides, the model gives good predictions for the heat capacity and helicity versus temperature and urea. The model also gives good fits for the denaturation of Oas's three-helix bundle B domain of protein A (F13W*) and synthetic protein alpha3C by temperature and guanidine. The model predicts the conformational distributions. It shows that these proteins fold with transitions that are two-state, although the transitions in the Baldwin helices are nearly higher order. The model shows that the recently developed three-helix bundle polypeptoids of Lee et al. fold anti-cooperatively, with a predicted value of DeltaHvH/DeltaHcal = 0.72. The model also predicts that two-helix bundles are unstable in proteins but stable in peptoids. Our dynamic programming approach provides a general way to explore cooperativity in complex foldable polymers.

摘要

尽管已进行了大量研究,但生物分子折叠协同性仍未得到很好的理解。对于螺旋 - 线圈转变和线圈 - 球状转变存在定量模型,但尚无准确模型能同时处理链塌陷和二级结构形成。我们在此开发了一种用于折叠体链分子统计力学配分函数的动态规划方法。我们将其称为升阶模型。我们将其应用于螺旋 - 线圈和螺旋束折叠及协同性研究。对于14至50聚体的鲍德温肽,该模型对热容量以及螺旋度与温度和尿素的关系给出了良好预测。该模型对温度和胍导致的蛋白质A的Oas三螺旋束B结构域(F13W*)和合成蛋白质α3C的变性也给出了良好拟合。该模型预测了构象分布。结果表明,这些蛋白质以两态转变进行折叠,尽管鲍德温螺旋中的转变近乎更高阶。该模型表明,李等人最近开发的三螺旋束多肽折叠体以反协同方式折叠,预测的ΔHvH/ΔHcal值为0.72。该模型还预测双螺旋束在蛋白质中不稳定,但在多肽折叠体中稳定。我们的动态规划方法提供了一种探索复杂可折叠聚合物中协同性的通用方法。

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