Recognizing substructures and their relations embedded in a molecular structure representation is a key process for structure-activity or structure-property relationship (SAR/SPR) studies. A molecular structure can be either explicitly represented as a connection table (CT) or linear notation, such as SMILES, which is a language describing the connectivity of atoms in the molecular structure. Conventional SAR/SPR approaches rely on partitioning the CT into a set of predefined substructures as structural descriptors. In this work, we propose a new method to identifying SAR/SPR through linear notation (for example, SMILES) syntax analysis with self-attention mechanism, an interpretable deep learning architecture. The method has been evaluated...
Chemistry today has to face a critical challenge, whose success necessitates high-performance comput...
Small organic molecules, by binding to different proteins, can be used to modulate (inhibit/activate...
This study is dedicated to the introduction of a novel method that automatically extracts potential ...
Most approaches to structure-activity-relationship (SAR) prediction proceed in two steps. In the fir...
Most approaches to structure-activity-relationship (SAR) prediction proceed in two steps. In the fir...
Understanding the structure–activity relationships (SARs) of small molecules is important for develo...
Bioinformatics and Cheminformatics use computer as disciplines providing tools for acquisition, stor...
Abstract Computer descriptions of chemical molecular connectivity are necessary for searching chemic...
Molecular initiating events (MIEs) can be boiled down to chemical interactions. Chemicals that inter...
Structure-activity relationships (SAR) can be investigated for large sets of biologically active com...
The exploration of structure–activity relationships (SARs) of small bioactive molecules is a central...
BackgroundThere has been increasing interest in the use of deep neural networks for de novo design o...
International audienceThe line notations of chemical structures are more compact than those of graph...
© 2016 American Chemical Society.This paper describes the Structural and Physico-Chemical Interpreta...
The ever-increasing number of chemical compounds added every year has not been accompanied by a simi...
Chemistry today has to face a critical challenge, whose success necessitates high-performance comput...
Small organic molecules, by binding to different proteins, can be used to modulate (inhibit/activate...
This study is dedicated to the introduction of a novel method that automatically extracts potential ...
Most approaches to structure-activity-relationship (SAR) prediction proceed in two steps. In the fir...
Most approaches to structure-activity-relationship (SAR) prediction proceed in two steps. In the fir...
Understanding the structure–activity relationships (SARs) of small molecules is important for develo...
Bioinformatics and Cheminformatics use computer as disciplines providing tools for acquisition, stor...
Abstract Computer descriptions of chemical molecular connectivity are necessary for searching chemic...
Molecular initiating events (MIEs) can be boiled down to chemical interactions. Chemicals that inter...
Structure-activity relationships (SAR) can be investigated for large sets of biologically active com...
The exploration of structure–activity relationships (SARs) of small bioactive molecules is a central...
BackgroundThere has been increasing interest in the use of deep neural networks for de novo design o...
International audienceThe line notations of chemical structures are more compact than those of graph...
© 2016 American Chemical Society.This paper describes the Structural and Physico-Chemical Interpreta...
The ever-increasing number of chemical compounds added every year has not been accompanied by a simi...
Chemistry today has to face a critical challenge, whose success necessitates high-performance comput...
Small organic molecules, by binding to different proteins, can be used to modulate (inhibit/activate...
This study is dedicated to the introduction of a novel method that automatically extracts potential ...