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Integrative Structural Biology in the Era of Accurate Structure Prediction
Institution:1. Department of Biochemistry and Molecular Biology, George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv 6997801, Israel;2. Department of Biology, Technion-Israel Institute of Technology, Haifa 3200003, Israel;3. European Molecular Biology Laboratory (EMBL), Hamburg 22607, Germany;4. Department of Protein Evolution, Max Planck Institute for Developmental Biology, 72076 Tübingen, Germany;5. Department of Human Biology, Faculty of Natural Sciences, University of Haifa, 199 Aba Khoushy Ave., Mt. Carmel, 3498838 Haifa, Israel;6. Centre for Structural Systems Biology (CSSB), Hamburg 22607, Germany;7. Structural and Computational Biology Unit, European Molecular Biology Laboratory, Meyerhofstrasse 1, 69117 Heidelberg, Germany
Abstract:Characterizing the three-dimensional structure of macromolecules is central to understanding their function. Traditionally, structures of proteins and their complexes have been determined using experimental techniques such as X-ray crystallography, NMR, or cryo-electron microscopy—applied individually or in an integrative manner. Meanwhile, however, computational methods for protein structure prediction have been improving their accuracy, gradually, then suddenly, with the breakthrough advance by AlphaFold2, whose models of monomeric proteins are often as accurate as experimental structures. This breakthrough foreshadows a new era of computational methods that can build accurate models for most monomeric proteins. Here, we envision how such accurate modeling methods can combine with experimental structural biology techniques, enhancing integrative structural biology. We highlight the challenges that arise when considering multiple structural conformations, protein complexes, and polymorphic assemblies. These challenges will motivate further developments, both in modeling programs and in methods to solve experimental structures, towards better and quicker investigation of structure–function relationships.
Keywords:AlphaFold2  protein structure prediction  protein conformations  X-ray crystallography  NMR  cryo-electron microscopy
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