[HTML][HTML] An integrated bioinformatics platform for investigating the human E3 ubiquitin ligase-substrate interaction network

Y Li, P Xie, L Lu, J Wang, L Diao, Z Liu, F Guo… - Nature …, 2017 - nature.com
Y Li, P Xie, L Lu, J Wang, L Diao, Z Liu, F Guo, Y He, Y Liu, Q Huang, H Liang, D Li, F He
Nature communications, 2017nature.com
The ubiquitination mediated by ubiquitin activating enzyme (E1), ubiquitin conjugating
enzyme (E2), and ubiquitin ligase (E3) cascade is crucial to protein degradation,
transcription regulation, and cell signaling in eukaryotic cells. The high specificity of
ubiquitination is regulated by the interaction between E3 ubiquitin ligases and their target
substrates. Unfortunately, the landscape of human E3-substrate network has not been
systematically uncovered. Therefore, there is an urgent need to develop a high-throughput …
Abstract
The ubiquitination mediated by ubiquitin activating enzyme (E1), ubiquitin conjugating enzyme (E2), and ubiquitin ligase (E3) cascade is crucial to protein degradation, transcription regulation, and cell signaling in eukaryotic cells. The high specificity of ubiquitination is regulated by the interaction between E3 ubiquitin ligases and their target substrates. Unfortunately, the landscape of human E3-substrate network has not been systematically uncovered. Therefore, there is an urgent need to develop a high-throughput and efficient strategy to identify the E3-substrate interaction. To address this challenge, we develop a computational model based on multiple types of heterogeneous biological evidence to investigate the human E3-substrate interactions. Furthermore, we provide UbiBrowser as an integrated bioinformatics platform to predict and present the proteome-wide human E3-substrate interaction network (http://ubibrowser.ncpsb.org).
nature.com