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author Alexander, Leila T.
Lepore, Rosalba
Kryshtafovych, Andriy
Adamopoulos, Athanassios
Alahuhta, Markus
Arvin, Ann M.
Bomble, Yannick J.
Böttcher, Bettina
Breyton, Cécile
Chiarini, Valerio
Chinnam, Naga babu
Chiu, Wah
Fidelis, Krzysztof
Grinter, Rhys
Gupta, Gagan D.
Hartmann, Marcus D.
Hayes, Christopher S.
Heidebrecht, Tatjana
Ilari, Andrea
Joachimiak, Andrzej
Kim, Youngchang
Linares, Romain
Lovering, Andrew L.
Lunin, Vladimir V.
Lupas, Andrei N.
Makbul, Cihan
Michalska, Karolina
Moult, John
Mukherjee, Prasun K.
Nutt, William (Sam)
Oliver, Stefan L.
Perrakis, Anastassis
Stols, Lucy
Tainer, John A.
Topf, Maya
Tsutakawa, Susan E.
Valdivia‐Delgado, Mauricio
Schwede, Torsten
author_facet Alexander, Leila T.
Lepore, Rosalba
Kryshtafovych, Andriy
Adamopoulos, Athanassios
Alahuhta, Markus
Arvin, Ann M.
Bomble, Yannick J.
Böttcher, Bettina
Breyton, Cécile
Chiarini, Valerio
Chinnam, Naga babu
Chiu, Wah
Fidelis, Krzysztof
Grinter, Rhys
Gupta, Gagan D.
Hartmann, Marcus D.
Hayes, Christopher S.
Heidebrecht, Tatjana
Ilari, Andrea
Joachimiak, Andrzej
Kim, Youngchang
Linares, Romain
Lovering, Andrew L.
Lunin, Vladimir V.
Lupas, Andrei N.
Makbul, Cihan
Michalska, Karolina
Moult, John
Mukherjee, Prasun K.
Nutt, William (Sam)
Oliver, Stefan L.
Perrakis, Anastassis
Stols, Lucy
Tainer, John A.
Topf, Maya
Tsutakawa, Susan E.
Valdivia‐Delgado, Mauricio
Schwede, Torsten
author_sort Alexander, Leila T.
collection PubMed
description 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.
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spelling pubmed-86168542022-10-14 Target highlights in CASP14: Analysis of models by structure providers Alexander, Leila T. Lepore, Rosalba Kryshtafovych, Andriy Adamopoulos, Athanassios Alahuhta, Markus Arvin, Ann M. Bomble, Yannick J. Böttcher, Bettina Breyton, Cécile Chiarini, Valerio Chinnam, Naga babu Chiu, Wah Fidelis, Krzysztof Grinter, Rhys Gupta, Gagan D. Hartmann, Marcus D. Hayes, Christopher S. Heidebrecht, Tatjana Ilari, Andrea Joachimiak, Andrzej Kim, Youngchang Linares, Romain Lovering, Andrew L. Lunin, Vladimir V. Lupas, Andrei N. Makbul, Cihan Michalska, Karolina Moult, John Mukherjee, Prasun K. Nutt, William (Sam) Oliver, Stefan L. Perrakis, Anastassis Stols, Lucy Tainer, John A. Topf, Maya Tsutakawa, Susan E. Valdivia‐Delgado, Mauricio Schwede, Torsten Proteins Research Articles 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. John Wiley & Sons, Inc. 2021-10-10 2021-12 /pmc/articles/PMC8616854/ /pubmed/34561912 http://dx.doi.org/10.1002/prot.26247 Text en © 2021 The Authors. Proteins: Structure, Function, and Bioinformatics published by Wiley Periodicals LLC. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Alexander, Leila T.
Lepore, Rosalba
Kryshtafovych, Andriy
Adamopoulos, Athanassios
Alahuhta, Markus
Arvin, Ann M.
Bomble, Yannick J.
Böttcher, Bettina
Breyton, Cécile
Chiarini, Valerio
Chinnam, Naga babu
Chiu, Wah
Fidelis, Krzysztof
Grinter, Rhys
Gupta, Gagan D.
Hartmann, Marcus D.
Hayes, Christopher S.
Heidebrecht, Tatjana
Ilari, Andrea
Joachimiak, Andrzej
Kim, Youngchang
Linares, Romain
Lovering, Andrew L.
Lunin, Vladimir V.
Lupas, Andrei N.
Makbul, Cihan
Michalska, Karolina
Moult, John
Mukherjee, Prasun K.
Nutt, William (Sam)
Oliver, Stefan L.
Perrakis, Anastassis
Stols, Lucy
Tainer, John A.
Topf, Maya
Tsutakawa, Susan E.
Valdivia‐Delgado, Mauricio
Schwede, Torsten
Target highlights in CASP14: Analysis of models by structure providers
title Target highlights in CASP14: Analysis of models by structure providers
title_full Target highlights in CASP14: Analysis of models by structure providers
title_fullStr Target highlights in CASP14: Analysis of models by structure providers
title_full_unstemmed Target highlights in CASP14: Analysis of models by structure providers
title_short Target highlights in CASP14: Analysis of models by structure providers
title_sort target highlights in casp14: analysis of models by structure providers
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8616854/
https://www.ncbi.nlm.nih.gov/pubmed/34561912
http://dx.doi.org/10.1002/prot.26247
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