Projects per year
Abstract
The accurate identification of catalytic residues contributes to our understanding of enzyme functions in biological processes and pathways. The increasing number of protein sequences necessitates computational tools for the automated prediction of catalytic residues in enzymes. Here, we introduce SCREEN, a graph neural network for the high-throughput prediction of catalytic residues via the integration of enzyme functional and structural information. SCREEN constructs residue representations based on spatial arrangements and incorporates enzyme function priors into such representations through contrastive learning. We demonstrate that SCREEN (1) consistently outperforms currently-available predictors; (2) provides accurate results when applied to inferred enzyme structures; and (3) generalizes well to enzymes dissimilar from those in the training set. We also show that the putative catalytic residues predicted by SCREEN mimic key structural and biophysical characteristics of native catalytic residues. Moreover, using experimental datasets, we show that SCREEN’s predictions can be used to distinguish residues with a high mutation tolerance from those likely to cause functional loss when mutated, indicating that this tool might be used to infer disease-associated mutations. SCREEN is publicly available at https://github.com/BioColLab/SCREEN and https://ngdc.cncb.ac.cn/biocode/tool/7580.
Original language | English |
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Article number | qzae094 |
Number of pages | 31 |
Journal | Genomics, Proteomics and Bioinformatics |
Volume | 22 |
Issue number | 6 |
DOIs | |
Publication status | Published - Dec 2024 |
Keywords
- Catalytic residue
- Contrastive learning
- Enzyme structure
- Evolutionary conservation
- Graph neural network
Projects
- 1 Active
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Artificial intelligence to explore and combat eukaryotic pathogens
Gasser, R. B. (Primary Chief Investigator (PCI)), Song, J. (Chief Investigator (CI)) & Chang, B. C. H. (Chief Investigator (CI))
Australian Research Council (ARC)
1/07/23 → …
Project: Research