TY - JOUR
T1 - CAID prediction portal
T2 - A comprehensive service for predicting intrinsic disorder and binding regions in proteins
AU - CAID predictors
AU - Del Conte, Alessio
AU - Bouhraoua, Adel
AU - Mehdiabadi, Mahta
AU - Clementel, Damiano
AU - Monzon, Alexander Miguel
AU - Tosatto, Silvio C.E.
AU - Piovesan, Damiano
AU - Holehouse, Alex S.
AU - Griffith, Daniel
AU - Emenecker, Ryan J.
AU - Patil, Ashwini
AU - Sharma, Ronesh
AU - Tsunoda, Tatsuhiko
AU - Sharma, Alok
AU - Tang, Yi Jun
AU - Liu, Bin
AU - Mirabello, Claudio
AU - Wallner, Björn
AU - Rost, Burkhard
AU - Ilzhöfer, Dagmar
AU - Littmann, Maria
AU - Heinzinger, Michael
AU - Krautheimer, Lea I.M.
AU - Bernhofer, Michael
AU - McGuffin, Liam J.
AU - Callebaut, Isabelle
AU - Feildel, Tristan Bitard
AU - Liu, Jian
AU - Cheng, Jianlin
AU - Guo, Zhiye
AU - Xu, Jinbo
AU - Wang, Sheng
AU - Malhis, Nawar
AU - Gsponer, Jörg
AU - Kim, Chol Song
AU - Han, Kun Sop
AU - Ma, Myong Chol
AU - Kurgan, Lukasz
AU - Ghadermarzi, Sina
AU - Katuwawala, Akila
AU - Zhao, Bi
AU - Peng, Zhenling
AU - Wu, Zhonghua
AU - Hu, Gang
AU - Wang, Kui
AU - Hoque, Md Tamjidul
AU - Ul Kabir, Md Wasi
AU - Vendruscolo, Michele
AU - Sormanni, Pietro
AU - Li, Min
N1 - Publisher Copyright:
© 2023 The Author(s). Published by Oxford University Press on behalf of Nucleic Acids Research.
PY - 2023/7/5
Y1 - 2023/7/5
N2 - Intrinsic disorder (ID) in proteins is well-established in structural biology, with increasing evidence for its involvement in essential biological processes. As measuring dynamic ID behavior experimentally on a large scale remains difficult, scores of published ID predictors have tried to fill this gap. Unfortunately, their heterogeneity makes it difficult to compare performance, confounding biologists wanting to make an informed choice. To address this issue, the Critical Assessment of protein Intrinsic Disorder (CAID) benchmarks predictors for ID and binding regions as a community blind-test in a standardized computing environment. Here we present the CAID Prediction Portal, a web server executing all CAID methods on user-defined sequences. The server generates standardized output and facilitates comparison between methods, producing a consensus prediction highlighting high-confidence ID regions. The website contains extensive documentation explaining the meaning of different CAID statistics and providing a brief description of all methods. Predictor output is visualized in an interactive feature viewer and made available for download in a single table, with the option to recover previous sessions via a private dashboard. The CAID Prediction Portal is a valuable resource for researchers interested in studying ID in proteins. The server is available at the URL: https://caid.idpcentral.org.
AB - Intrinsic disorder (ID) in proteins is well-established in structural biology, with increasing evidence for its involvement in essential biological processes. As measuring dynamic ID behavior experimentally on a large scale remains difficult, scores of published ID predictors have tried to fill this gap. Unfortunately, their heterogeneity makes it difficult to compare performance, confounding biologists wanting to make an informed choice. To address this issue, the Critical Assessment of protein Intrinsic Disorder (CAID) benchmarks predictors for ID and binding regions as a community blind-test in a standardized computing environment. Here we present the CAID Prediction Portal, a web server executing all CAID methods on user-defined sequences. The server generates standardized output and facilitates comparison between methods, producing a consensus prediction highlighting high-confidence ID regions. The website contains extensive documentation explaining the meaning of different CAID statistics and providing a brief description of all methods. Predictor output is visualized in an interactive feature viewer and made available for download in a single table, with the option to recover previous sessions via a private dashboard. The CAID Prediction Portal is a valuable resource for researchers interested in studying ID in proteins. The server is available at the URL: https://caid.idpcentral.org.
UR - http://www.scopus.com/inward/record.url?scp=85163958831&partnerID=8YFLogxK
U2 - 10.1093/nar/gkad430
DO - 10.1093/nar/gkad430
M3 - Article
C2 - 37246642
AN - SCOPUS:85163958831
SN - 0305-1048
VL - 51
SP - W62-W69
JO - Nucleic Acids Research
JF - Nucleic Acids Research
IS - W1
ER -