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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Three-dimensional structure and dynamics of a de novo designed, amphiphilic, metallo-porphyrin-binding protein maquette at soft interfaces by molecular dynamics simulations
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Three-dimensional structure and dynamics of a de novo designed, amphiphilic, metallo-porphyrin-binding protein maquette at soft interfaces by molecular dynamics simulations

机译:通过分子动力学模拟从头设计的两亲金属卟啉结合蛋白模型在柔性界面上的三维结构和动力学

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摘要

The three-dimensional structure and dynamics of de novo designed, amphiphilic four-helix bundle peptides (or "maquettes"), capable of binding metallo-porphyrin cofactors at selected locations along the length of the core of the bundle, are investigated via molecular dynamics simulations. The rapid evolution of the initial design to stable three-dimensional structures in the absence (apo-form) and presence (holo-form) of bound cofactors is described for the maquettes at two different soft interfaces between polar and nonpolar media. This comparison of the apo- versus holo-forms allows the investigation of the effects of cofactor incorporation on the structure of the four-helix bundle. The simulation results are in qualitative agreement with available experimental data describing the structures at lower resolution and limited dimension.
机译:通过分子动力学研究了从头设计的两亲性四螺旋束多肽(或“模型”)的三维结构和动力学,该肽能够沿着束核的长度在选定位置结合金属卟啉辅因子。模拟。描述了在极性和非极性介质之间的两个不同软界面处,模型在不存在(脱辅基形式)和存在(全息形式)结合辅因子的情况下,从最初的设计迅速演变为稳定的三维结构。载脂蛋白和全脂蛋白形式的比较允许研究辅因子掺入对四螺旋束结构的影响。仿真结果与描述较低分辨率和有限尺寸结构的可用实验数据在质量上吻合。

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