首页> 外文期刊>International Journal of Molecular Sciences >Site-Mutation of Hydrophobic Core Residues Synchronically Poise Super Interleukin 2 for Signaling: Identifying Distant Structural Effects through Affordable Computations
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Site-Mutation of Hydrophobic Core Residues Synchronically Poise Super Interleukin 2 for Signaling: Identifying Distant Structural Effects through Affordable Computations

机译:疏水核心残基的位点突变同步保​​持平衡的超级白介素2的信号:通过负担得起的计算确定远处的结构影响。

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A superkine variant of interleukin-2 with six site mutations away from the binding interface developed from the yeast display technique has been previously characterized as undergoing a distal structure alteration which is responsible for its super-potency and provides an elegant case study with which to get insight about how to utilize allosteric effect to achieve desirable protein functions. By examining the dynamic network and the allosteric pathways related to those mutated residues using various computational approaches, we found that nanosecond time scale all-atom molecular dynamics simulations can identify the dynamic network as efficient as an ensemble algorithm. The differentiated pathways for the six core residues form a dynamic network that outlines the area of structure alteration. The results offer potentials of using affordable computing power to predict allosteric structure of mutants in knowledge-based mutagenesis.
机译:白细胞介素2的一种超动力变异体,具有六个远离酵母展示技术的结合界面的位点突变,先前已被表征为发生远端结构改变,这是其超强效能的原因,并提供了一个优雅的案例研究关于如何利用变构效应来实现所需蛋白质功能的见解。通过使用各种计算方法检查动态网络和与那些突变残基相关的变构途径,我们发现纳秒级时标全原子分子动力学模拟可以识别出动态网络与集成算法一样有效。六个核心残基的差异化途径形成一个动态网络,勾勒出结构改变的区域。结果提供了使用负担得起的计算能力来预测基于知识的诱变中突变体的变构结构的潜力。

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