MView-DTI: A Multi-view Feature Fusion-Based Approach for Drug-Target Protein Interaction Prediction
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-8141-0_30
Reference20 articles.
1. Manoochehri, H.E., Nourani, M.: Drug-target interaction prediction using semi-bipartite graph model and deep learning. BMC Bioinformatics 21, 1–16 (2020)
2. Maia, E.H.B., Assis, L.C., De Oliveira, T.A., Da Silva, A.M., Taranto, A.G.: Structure-based virtual screening: from classical to artificial intelligence. Front. Chem. 8, 343 (2020)
3. Himmat, M., Salim, N., Al-Dabbagh, M.M., Saeed, F., Ahmed, A.: Adapting document similarity measures for ligand-based virtual screening. Molecules 21(4), 476 (2016)
4. Lee, I., Keum, J., Nam, H.: DeepConv-DTI: prediction of drug-target interactions via deep learning with convolution on protein sequences. PLoS Comput. Biol. 15(6), e1007129 (2019)
5. Öztürk, H., Özgür, A., Ozkirimli, E.: DeepDTA: deep drug-target binding affinity prediction. Bioinformatics 34, I821–I829 (2018)
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