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- W2058094839 endingPage "318" @default.
- W2058094839 startingPage "307" @default.
- W2058094839 abstract "Biomolecules adopt a dynamic ensemble of conformations, each with the potential to interact with binding partners or perform the chemical reactions required for a multitude of cellular functions. Recent advances in X-ray crystallography, nuclear magnetic resonance (NMR) spectroscopy and other techniques are helping us realize the dream of seeing--in atomic detail--how different parts of biomolecules shift between functional substates using concerted motions. Integrative structural biology has advanced our understanding of the formation of large macromolecular complexes and how their components interact in assemblies by leveraging data from many low-resolution methods. Here, we review the growing opportunities for integrative, dynamic structural biology at the atomic scale, contending there is increasing synergistic potential between X-ray crystallography, NMR and computer simulations to reveal a structural basis for protein conformational dynamics at high resolution." @default.
- W2058094839 created "2016-06-24" @default.
- W2058094839 creator A5005718983 @default.
- W2058094839 creator A5051355898 @default.
- W2058094839 date "2015-03-31" @default.
- W2058094839 modified "2023-09-30" @default.
- W2058094839 title "Integrative, dynamic structural biology at atomic resolution—it's about time" @default.
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