Article detail · 2018
DeepDTA: deep drug-target binding affinity prediction
- Year
- 2018
- Type
- article
Data source split
- YÖKSİS YÖKSİS article record
- YÖKSİS venue BIOINFORMATICS
- Catalog match (ISSN) Bioinformatics
- OpenAlex OpenAlex enrichment (abstract, citations, topics)
Abstract
OpenAlex · English
Motivation: The identification of novel drug-target (DT) interactions is a substantial part of the drug discovery process. Most of the computational methods that have been proposed to predict DT interactions have focused on binary classification, where the goal is to determine whether a DT pair interacts or not. However, protein-ligand interactions assume a continuum of binding strength values, also called binding affinity and predicting this value still remains a challenge. The increase in the affinity data available in DT knowledge-bases allows the use of advanced learning techniques such as deep learning architectures in the prediction of binding affinities. In this study, we propose a deep-learning based model that uses only sequence information of both targets and drugs to predict DT interaction binding affinities. The few studies that focus on DT binding affinity prediction use either 3D structures of protein-ligand complexes or 2D features of compounds. One novel approach used in this work is the modeling of protein sequences and compound 1D representations with convolutional neural networks (CNNs). Results: The results show that the proposed deep learning based model that uses the 1D representations of targets and drugs is an effective approach for drug target binding affinity prediction. The model in which high-level representations of a drug and a target are constructed via CNNs achieved the best Concordance Index (CI) performance in one of our larger benchmark datasets, outperforming the KronRLS algorithm and SimBoost, a state-of-the-art method for DT binding affinity prediction. Availability and implementation: https://github.com/hkmztrk/DeepDTA. Supplementary information: Supplementary data are available at Bioinformatics online.
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Citations
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1,758 citations
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16 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).
- Learning functional properties of proteins with language models 2022
- Exploring chemical space using natural language processing methodologies for drug discovery 2020
- MDeePred: novel multi-channel protein featurization for deep learning-based binding affinity prediction in drug discovery 2021
- MDeePred: novel multi-channel protein featurization for deep learning-based binding affinity prediction in drug discovery 2021
- ChemBoost: A Chemical Language Based Approach for Protein - Ligand Binding Affinity Prediction 2020
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