Extending the New Generation of Structure Predictors to Account for Dynamics and Allostery
Author:
Funder
Israel Science Foundation
European Research Council
Publisher
Elsevier BV
Subject
Molecular Biology,Structural Biology
Reference38 articles.
1. High accuracy protein structure prediction using deep learning;Jumper,2020
2. Improved protein structure prediction using predicted interresidue orientations;Yang;Proc. Natl. Acad. Sci. U. S. A.,2020
3. Accurate De Novo prediction of protein contact map by ultra-deep learning model;Wang;PLoS Comput. Biol.,2017
4. Deep-learning contact-map guided protein structure prediction in CASP13;Zheng;Proteins: Struct Funct. Bioinf.,2019
5. Deep learning extends de novo protein modelling coverage of genomes using iteratively predicted structural constraints;Greener;Nature Commun.,2019
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