bioRxiv · 10.1101/319335
Refinement of highly flexible protein structures using simulation-guided spectroscopy
Abstract
Highly flexible proteins present a special challenge for structure determination because they are multi-structured yet not disordered, and the resulting conformational ensembles are essential for understanding function. Determining such ensembles is difficult because many measurements that capture multiple conformational populations provide sparse data. A powerful opportunity exists to leverage molecular simulations for spectroscopic experiment selection. We have developed an information-theoretic approach to guide experiments by identifying which measurements best refine the underlying conformational ensemble. We have tested this approach on three flexible bacterial proteins. For proteins where a clear mechanistic hypothesis drives label selection, our approach systematically identifies labels that would test this hypothesis. Furthermore, when available data do not yield an obvious mechanistically-guided label selection strategy, our approach guides label selection and produces conformational refinement that significantly outperforms standard structure-guided approaches. Our information-theoretic approach to label selection thus offers a particular advantage when refining challenging, underdetermined protein conformational ensembles.
Source connections
Explore related subjects
Keep this discovery
Hays, J. M., Kieber, M. K., Li, J. Z., Han, J. I., Moremen, K. W., Columbus, L., Kasson, P. M.. 2018-05-10. Refinement of highly flexible protein structures using simulation-guided spectroscopy. https://doi.org/10.1101/319335
Cite the original work for its findings. Save a collection to share your selection of sources.