Off-target binding is one of the primary causes of toxic side effects of drugs in clinical development, resulting in failures of clinical trials. While off-target drug binding is a known phenomenon, experimental identification of the undesired protein binders can be prohibitively expensive due to the large pool of possible biological targets. Here, we propose a new strategy combining chemical similarity principle and deep learning to enable proteome-wide mapping of compound-protein interactions. We have developed a pipeline to identify the targets of bioactive molecules by matching them with chemically similar annotated “bait” compounds and ranking them with deep learning. We have constructed a user-friendly web server for drug-target ident...
An expanded chemical space is essential for improved identification of small molecules for emerging ...
An expanded chemical space is essential for improved identification of small molecules for emerging ...
An expanded chemical space is essential for improved identification of small molecules for emerging ...
Chemoproteomics is a key technology to characterize the mode of action of drugs, as it directly iden...
Proteomics is often used to map protein-drug interactions but identifying a drug’s protein targets a...
The discovery of novel bioactive molecules advances our systems-level understanding of biological pr...
Computational prediction of compound-protein interactions generated a substantial amount of interest...
Computational prediction of genome-wide protein-ligand interactions plays a key role in drug discove...
Target identification is essential for drug design, drug-drug interaction prediction, dosage adjustm...
Target identification is one of the most critical steps following cell-based phenotypic chemical scr...
Target identification is one of the most critical steps following cell-based phenotypic chemical scr...
Target identification is one of the most critical steps following cell-based phenotypic chemical scr...
© 2021 Oxford University Press. All rights reserved.Motivation: Identification of interactions betwe...
Identifying novel drug-target interactions (DTI) is a critical and rate limiting step in drug discov...
<div><p>Target identification is one of the most critical steps following cell-based phenotypic chem...
An expanded chemical space is essential for improved identification of small molecules for emerging ...
An expanded chemical space is essential for improved identification of small molecules for emerging ...
An expanded chemical space is essential for improved identification of small molecules for emerging ...
Chemoproteomics is a key technology to characterize the mode of action of drugs, as it directly iden...
Proteomics is often used to map protein-drug interactions but identifying a drug’s protein targets a...
The discovery of novel bioactive molecules advances our systems-level understanding of biological pr...
Computational prediction of compound-protein interactions generated a substantial amount of interest...
Computational prediction of genome-wide protein-ligand interactions plays a key role in drug discove...
Target identification is essential for drug design, drug-drug interaction prediction, dosage adjustm...
Target identification is one of the most critical steps following cell-based phenotypic chemical scr...
Target identification is one of the most critical steps following cell-based phenotypic chemical scr...
Target identification is one of the most critical steps following cell-based phenotypic chemical scr...
© 2021 Oxford University Press. All rights reserved.Motivation: Identification of interactions betwe...
Identifying novel drug-target interactions (DTI) is a critical and rate limiting step in drug discov...
<div><p>Target identification is one of the most critical steps following cell-based phenotypic chem...
An expanded chemical space is essential for improved identification of small molecules for emerging ...
An expanded chemical space is essential for improved identification of small molecules for emerging ...
An expanded chemical space is essential for improved identification of small molecules for emerging ...