The biological and functional significance of selected Critical Assessment of Techniques for Protein Structure Prediction 14 (CASP14) targets are described by the authors of the structures. The authors highlight the most relevant features of the target proteins and discuss how well these features were reproduced in the respective submitted predictions. The overall ability to predict three-dimensional structures of proteins has improved remarkably in CASP14, and many difficult targets were modeled with impressive accuracy. For the first time in the history of CASP, the experimentalists not only highlighted that computational models can accurately reproduce the most critical structural features observed in their targets, but also envisaged that models could serve as a guidance for further studies of biologically-relevant properties of proteins.

Target highlights in CASP14: Analysis of models by structure providers / Alexander, L. T.; Lepore, R.; Kryshtafovych, A.; Adamopoulos, A.; Alahuhta, M.; Arvin, A. M.; Bomble, Y. J.; Bottcher, B.; Breyton, C.; Chiarini, V.; Chinnam, N. B.; Chiu, W.; Fidelis, K.; Grinter, R.; Gupta, G. D.; Hartmann, M. D.; Hayes, C. S.; Heidebrecht, T.; Ilari, A.; Joachimiak, A.; Kim, Y.; Linares, R.; Lovering, A. L.; Lunin, V. V.; Lupas, A. N.; Makbul, C.; Michalska, K.; Moult, J.; Mukherjee, P. K.; Nutt, W.; Oliver, S. L.; Perrakis, A.; Stols, L.; Tainer, J. A.; Topf, M.; Tsutakawa, S. E.; Valdivia-Delgado, M.; Schwede, T.. - In: PROTEINS. - ISSN 0887-3585. - 89:12(2021), pp. 1647-1672. [10.1002/prot.26247]

Target highlights in CASP14: Analysis of models by structure providers

Lepore R.;Ilari A.
Data Curation
;
2021

Abstract

The biological and functional significance of selected Critical Assessment of Techniques for Protein Structure Prediction 14 (CASP14) targets are described by the authors of the structures. The authors highlight the most relevant features of the target proteins and discuss how well these features were reproduced in the respective submitted predictions. The overall ability to predict three-dimensional structures of proteins has improved remarkably in CASP14, and many difficult targets were modeled with impressive accuracy. For the first time in the history of CASP, the experimentalists not only highlighted that computational models can accurately reproduce the most critical structural features observed in their targets, but also envisaged that models could serve as a guidance for further studies of biologically-relevant properties of proteins.
2021
CASP; community-wide experiment; cryo-EM; protein structure prediction; X-ray crystallography; Amino Acid Sequence; Computational Biology; Cryoelectron Microscopy; Crystallography, X-Ray; Proteins; Sequence Analysis, Protein; Models, Molecular; Protein Conformation; Software
01 Pubblicazione su rivista::01a Articolo in rivista
Target highlights in CASP14: Analysis of models by structure providers / Alexander, L. T.; Lepore, R.; Kryshtafovych, A.; Adamopoulos, A.; Alahuhta, M.; Arvin, A. M.; Bomble, Y. J.; Bottcher, B.; Breyton, C.; Chiarini, V.; Chinnam, N. B.; Chiu, W.; Fidelis, K.; Grinter, R.; Gupta, G. D.; Hartmann, M. D.; Hayes, C. S.; Heidebrecht, T.; Ilari, A.; Joachimiak, A.; Kim, Y.; Linares, R.; Lovering, A. L.; Lunin, V. V.; Lupas, A. N.; Makbul, C.; Michalska, K.; Moult, J.; Mukherjee, P. K.; Nutt, W.; Oliver, S. L.; Perrakis, A.; Stols, L.; Tainer, J. A.; Topf, M.; Tsutakawa, S. E.; Valdivia-Delgado, M.; Schwede, T.. - In: PROTEINS. - ISSN 0887-3585. - 89:12(2021), pp. 1647-1672. [10.1002/prot.26247]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1617243
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