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UbiBrowser 2.0: a comprehensive resource for proteome-wide known and predicted ubiquitin ligase/deubiquitinase–substrate interactions in eukaryotic species

As an important post-translational modification, ubiquitination mediates ∼80% of protein degradation in eukaryotes. The degree of protein ubiquitination is tightly determined by the delicate balance between specific ubiquitin ligase (E3)-mediated ubiquitination and deubiquitinase-mediated deubiquiti...

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Autores principales: Wang, Xun, Li, Yang, He, Mengqi, Kong, Xiangren, Jiang, Peng, Liu, Xi, Diao, Lihong, Zhang, Xinlei, Li, Honglei, Ling, Xinping, Xia, Simin, Liu, Zhongyang, Liu, Yuan, Cui, Chun-Ping, Wang, Yan, Tang, Liujun, Zhang, Lingqiang, He, Fuchu, Li, Dong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8728189/
https://www.ncbi.nlm.nih.gov/pubmed/34669962
http://dx.doi.org/10.1093/nar/gkab962
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author Wang, Xun
Li, Yang
He, Mengqi
Kong, Xiangren
Jiang, Peng
Liu, Xi
Diao, Lihong
Zhang, Xinlei
Li, Honglei
Ling, Xinping
Xia, Simin
Liu, Zhongyang
Liu, Yuan
Cui, Chun-Ping
Wang, Yan
Tang, Liujun
Zhang, Lingqiang
He, Fuchu
Li, Dong
author_facet Wang, Xun
Li, Yang
He, Mengqi
Kong, Xiangren
Jiang, Peng
Liu, Xi
Diao, Lihong
Zhang, Xinlei
Li, Honglei
Ling, Xinping
Xia, Simin
Liu, Zhongyang
Liu, Yuan
Cui, Chun-Ping
Wang, Yan
Tang, Liujun
Zhang, Lingqiang
He, Fuchu
Li, Dong
author_sort Wang, Xun
collection PubMed
description As an important post-translational modification, ubiquitination mediates ∼80% of protein degradation in eukaryotes. The degree of protein ubiquitination is tightly determined by the delicate balance between specific ubiquitin ligase (E3)-mediated ubiquitination and deubiquitinase-mediated deubiquitination. In 2017, we developed UbiBrowser 1.0, which is an integrated database for predicted human proteome-wide E3–substrate interactions. Here, to meet the urgent requirement of proteome-wide E3/deubiquitinase–substrate interactions (ESIs/DSIs) in multiple organisms, we updated UbiBrowser to version 2.0 (http://ubibrowser.ncpsb.org.cn). Using an improved protocol, we collected 4068/967 known ESIs/DSIs by manual curation, and we predicted about 2.2 million highly confident ESIs/DSIs in 39 organisms, with >210-fold increase in total data volume. In addition, we made several new features in the updated version: (i) it allows exploring proteins’ upstream E3 ligases and deubiquitinases simultaneously; (ii) it has significantly increased species coverage; (iii) it presents a uniform confidence scoring system to rank predicted ESIs/DSIs. To facilitate the usage of UbiBrowser 2.0, we also redesigned the web interface for exploring these known and predicted ESIs/DSIs, and added functions of ‘Browse’, ‘Download’ and ‘Application Programming Interface’. We believe that UbiBrowser 2.0, as a discovery tool, will contribute to the study of protein ubiquitination and the development of drug targets for complex diseases.
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spelling pubmed-87281892022-01-05 UbiBrowser 2.0: a comprehensive resource for proteome-wide known and predicted ubiquitin ligase/deubiquitinase–substrate interactions in eukaryotic species Wang, Xun Li, Yang He, Mengqi Kong, Xiangren Jiang, Peng Liu, Xi Diao, Lihong Zhang, Xinlei Li, Honglei Ling, Xinping Xia, Simin Liu, Zhongyang Liu, Yuan Cui, Chun-Ping Wang, Yan Tang, Liujun Zhang, Lingqiang He, Fuchu Li, Dong Nucleic Acids Res Database Issue As an important post-translational modification, ubiquitination mediates ∼80% of protein degradation in eukaryotes. The degree of protein ubiquitination is tightly determined by the delicate balance between specific ubiquitin ligase (E3)-mediated ubiquitination and deubiquitinase-mediated deubiquitination. In 2017, we developed UbiBrowser 1.0, which is an integrated database for predicted human proteome-wide E3–substrate interactions. Here, to meet the urgent requirement of proteome-wide E3/deubiquitinase–substrate interactions (ESIs/DSIs) in multiple organisms, we updated UbiBrowser to version 2.0 (http://ubibrowser.ncpsb.org.cn). Using an improved protocol, we collected 4068/967 known ESIs/DSIs by manual curation, and we predicted about 2.2 million highly confident ESIs/DSIs in 39 organisms, with >210-fold increase in total data volume. In addition, we made several new features in the updated version: (i) it allows exploring proteins’ upstream E3 ligases and deubiquitinases simultaneously; (ii) it has significantly increased species coverage; (iii) it presents a uniform confidence scoring system to rank predicted ESIs/DSIs. To facilitate the usage of UbiBrowser 2.0, we also redesigned the web interface for exploring these known and predicted ESIs/DSIs, and added functions of ‘Browse’, ‘Download’ and ‘Application Programming Interface’. We believe that UbiBrowser 2.0, as a discovery tool, will contribute to the study of protein ubiquitination and the development of drug targets for complex diseases. Oxford University Press 2021-10-20 /pmc/articles/PMC8728189/ /pubmed/34669962 http://dx.doi.org/10.1093/nar/gkab962 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of Nucleic Acids Research. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Database Issue
Wang, Xun
Li, Yang
He, Mengqi
Kong, Xiangren
Jiang, Peng
Liu, Xi
Diao, Lihong
Zhang, Xinlei
Li, Honglei
Ling, Xinping
Xia, Simin
Liu, Zhongyang
Liu, Yuan
Cui, Chun-Ping
Wang, Yan
Tang, Liujun
Zhang, Lingqiang
He, Fuchu
Li, Dong
UbiBrowser 2.0: a comprehensive resource for proteome-wide known and predicted ubiquitin ligase/deubiquitinase–substrate interactions in eukaryotic species
title UbiBrowser 2.0: a comprehensive resource for proteome-wide known and predicted ubiquitin ligase/deubiquitinase–substrate interactions in eukaryotic species
title_full UbiBrowser 2.0: a comprehensive resource for proteome-wide known and predicted ubiquitin ligase/deubiquitinase–substrate interactions in eukaryotic species
title_fullStr UbiBrowser 2.0: a comprehensive resource for proteome-wide known and predicted ubiquitin ligase/deubiquitinase–substrate interactions in eukaryotic species
title_full_unstemmed UbiBrowser 2.0: a comprehensive resource for proteome-wide known and predicted ubiquitin ligase/deubiquitinase–substrate interactions in eukaryotic species
title_short UbiBrowser 2.0: a comprehensive resource for proteome-wide known and predicted ubiquitin ligase/deubiquitinase–substrate interactions in eukaryotic species
title_sort ubibrowser 2.0: a comprehensive resource for proteome-wide known and predicted ubiquitin ligase/deubiquitinase–substrate interactions in eukaryotic species
topic Database Issue
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8728189/
https://www.ncbi.nlm.nih.gov/pubmed/34669962
http://dx.doi.org/10.1093/nar/gkab962
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