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首页> 外文期刊>Proteins: Structure, Function, and Genetics >A detailed unfolding pathway of a (beta/alpha)8-barrel protein as studied by molecular dynamics simulations.
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A detailed unfolding pathway of a (beta/alpha)8-barrel protein as studied by molecular dynamics simulations.

机译:通过分子动力学模拟研究了β/α8-桶状蛋白质的详细展开途径。

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摘要

The (beta/alpha)(8)-barrel is the most common protein fold. Similar structural properties for folding intermediates of (beta/alpha)(8)-barrel proteins involved in tryptophan biosynthesis have been reported in a number of experimental studies; these intermediates have the last two beta-strands and three alpha-helices partially unfolded, with other regions of the polypeptide chain native-like in conformation. To investigate the detailed folding/unfolding pathways of these (beta/alpha)(8)-barrel proteins, temperature-induced unfolding simulations of N-(5'-phosphoribosyl)anthranilate isomerase from Escherichia coli were carried out using a special-purpose parallel computer system. Unfolding simulations at five different temperatures showed a sequential unfolding pathway comprised of several events. Early events in unfolding involved disruption of the last two strands and three helices, producing an intermediate ensemble similar to those detected in experimental studies. Then, denaturation of the first two betaalpha units and separation of the sixth strand from the fifth took place independently. The remaining central betaalphabetaalphabeta module persisted the longest during all simulations, suggesting an important role for this module as the incipient folding scaffold. Our simulations also predicted the presence of a nucleation site, onto which several hydrophobic residues condensed forming the foundation for the central betaalphabetaalphabeta module.
机译:(beta / alpha)(8)-桶是最常见的蛋白质折叠。在许多实验研究中已经报道了涉及色氨酸生物合成的折叠β/α(8)-桶状蛋白中间体的相似结构性质。这些中间体的最后两个β链和三个α螺旋部分展开,多肽链的其他区域呈天然状。为了研究这些(beta / alpha)(8)-桶蛋白的详细折叠/展开途径,使用特殊用途的平行温度进行了大肠杆菌N-(5'-磷酸核糖基)邻氨基苯甲酸异构酶的温度诱导展开模拟。电脑系统。在五个不同温度下的展开模拟显示了由几个事件组成的顺序展开路径。展开中的早期事件涉及最后两条链和三个螺旋的破坏,产生了类似于实验研究中发现的中间合奏。然后,前两个betaalpha单元的变性和第六个链与第五个链的分离分别发生。其余的中央betaalphabetaalphabeta模块在所有模拟过程中持续时间最长,表明该模块作为初始折叠支架起着重要作用。我们的模拟还预测了成核位点的存在,几个疏水残基在其上凝结,形成了中央betaalphabetaalphabeta模块的基础。

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