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首页> 外文期刊>Annual review of biophysics >Computational Methodologies for Real-Space Structural Refinement of Large Macromolecular Complexes
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Computational Methodologies for Real-Space Structural Refinement of Large Macromolecular Complexes

机译:大型高分子配合物的现实空间结构优化的计算方法

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The rise of the computer as a powerful tool for model building and refinement has revolutionized the field of structure determination for large biomolecular systems. Despite the wide availability of robust experimental methods capable of resolving structural details across a range of spatiotemporal resolutions, computational hybrid methods have the unique ability to integrate the diverse data from multimodal techniques such as X-ray crystallography and electron microscopy into consistent, fully atomistic structures. Here, commonly employed strategies for computational real-space structural refinement are reviewed, and their specific applications are illustrated for several large macromolecular complexes: ribosome, virus capsids, chemosensory array, and photosynthetic chromatophore. The increasingly important role of computational methods in large-scale structural refinement, along with current and future challenges, is discussed.
机译:计算机作为一种强大的模型构建和完善工具的兴起,彻底改变了大型生物分子系统的结构确定领域。尽管能够在各种时空分辨率范围内解析结构细节的强大实验方法广泛可用,但计算混合方法仍具有将来自多峰技术(例如X射线晶体学和电子显微镜)的各种数据整合到一致的完全原子结构中的独特能力。 。在这里,回顾了用于计算实际空间结构细化的常用策略,并对几种大型高分子复合物的特定应用进行了说明:核糖体,病毒衣壳,化学传感阵列和光合色谱。讨论了计算方法在大规模结构优化中日益重要的作用,以及当前和未来的挑战。

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