3D Molecular Generation via Virtual Dynamics

02/12/2023
by   Shuqi Lu, et al.
0

Structure-based drug design, i.e., finding molecules with high affinities to the target protein pocket, is one of the most critical tasks in drug discovery. Traditional solutions, like virtual screening, require exhaustively searching on a large molecular database, which are inefficient and cannot return novel molecules beyond the database. The pocket-based 3D molecular generation model, i.e., directly generating a molecule with a 3D structure and binding position in the pocket, is a new promising way to address this issue. Herein, we propose VD-Gen, a novel pocket-based 3D molecular generation pipeline. VD-Gen consists of several carefully designed stages to generate fine-grained 3D molecules with binding positions in the pocket cavity end-to-end. Rather than directly generating or sampling atoms with 3D positions in the pocket like in early attempts, in VD-Gen, we first randomly initialize many virtual particles in the pocket; then iteratively move these virtual particles, making the distribution of virtual particles approximate the distribution of molecular atoms. After virtual particles are stabilized in 3D space, we extract a 3D molecule from them. Finally, we further refine atoms in the extracted molecule by iterative movement again, to get a high-quality 3D molecule, and predict a confidence score for it. Extensive experiment results on pocket-based molecular generation demonstrate that VD-Gen can generate novel 3D molecules to fill the target pocket cavity with high binding affinities, significantly outperforming previous baselines.

READ FULL TEXT

page 8

page 14

research
11/07/2021

Structure-aware generation of drug-like molecules

Structure-based drug design involves finding ligand molecules that exhib...
research
04/17/2021

Learning to design drug-like molecules in three-dimensional space using deep generative models

Recently, deep generative models for molecular graphs are gaining more a...
research
01/18/2019

Tunable Approximations to Control Time-to-Solution in an HPC Molecular Docking Mini-App

The drug discovery process involves several tasks to be performed in viv...
research
08/23/2023

Shape-conditioned 3D Molecule Generation via Equivariant Diffusion Models

Ligand-based drug design aims to identify novel drug candidates of simil...
research
12/20/2017

In silico generation of novel, drug-like chemical matter using the LSTM neural network

The exploration of novel chemical spaces is one of the most important ta...
research
09/12/2022

GPU-optimized Approaches to Molecular Docking-based Virtual Screening in Drug Discovery: A Comparative Analysis

COVID-19 has shown the importance of having a fast response against pand...
research
10/12/2022

Modular Flows: Differential Molecular Generation

Generating new molecules is fundamental to advancing critical applicatio...

Please sign up or login with your details

Forgot password? Click here to reset