AlphaFold Models of Small Proteins Rival the Accuracy of Solution NMR Structures.

Front Mol Biosci

Department of Chemistry and Chemical Biology, Center for Biotechnology and Interdisciplinary Sciences, Rensselaer Polytechnic Institute, Troy, NY, United States.

Published: June 2022

AI Article Synopsis

  • * This study analyzed small, rigid proteins using AlphaFold and assessed their accuracy against experimental NMR data through various validation tools in the Protein Structure Validation Software suite (PSVS).
  • * The findings show that AlphaFold's predictions are often as accurate or even superior to experimental structures, challenging the belief that AlphaFold struggles with NMR modeling and highlighting its potential in structural biology research.

Article Abstract

Recent advances in molecular modeling using deep learning have the potential to revolutionize the field of structural biology. In particular, AlphaFold has been observed to provide models of protein structures with accuracies rivaling medium-resolution X-ray crystal structures, and with excellent atomic coordinate matches to experimental protein NMR and cryo-electron microscopy structures. Here we assess the hypothesis that AlphaFold models of small, relatively rigid proteins have accuracies (based on comparison against experimental data) similar to experimental solution NMR structures. We selected six representative small proteins with structures determined by both NMR and X-ray crystallography, and modeled each of them using AlphaFold. Using several structure validation tools integrated under the Protein Structure Validation Software suite (PSVS), we then assessed how well these models fit to experimental NMR data, including NOESY peak lists (RPF-DP scores), comparisons between predicted rigidity and chemical shift data (ANSURR scores), and N-H residual dipolar coupling data (RDC Q factors) analyzed by software tools integrated in the PSVS suite. Remarkably, the fits to NMR data for the protein structure models predicted with AlphaFold are generally similar, or better, than for the corresponding experimental NMR or X-ray crystal structures. Similar conclusions were reached in comparing AlphaFold2 predictions and NMR structures for three targets from the Critical Assessment of Protein Structure Prediction (CASP). These results contradict the widely held misperception that AlphaFold cannot accurately model solution NMR structures. They also document the value of PSVS for model vs. data assessment of protein NMR structures, and the potential for using AlphaFold models for guiding analysis of experimental NMR data and more generally in structural biology.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9234698PMC
http://dx.doi.org/10.3389/fmolb.2022.877000DOI Listing

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