GEM-2: Next Generation Molecular Property Prediction Network with Many-body and Full-range Interaction Modeling

08/11/2022
by   Lihang Liu, et al.
0

Molecular property prediction is a fundamental task in the drug and material industries. Physically, the properties of a molecule are determined by its own electronic structure, which can be exactly described by the Schrödinger equation. However, solving the Schrödinger equation for most molecules is extremely challenging due to long-range interactions in the behavior of a quantum many-body system. While deep learning methods have proven to be effective in molecular property prediction, we design a novel method, namely GEM-2, which comprehensively considers both the long-range and many-body interactions in molecules. GEM-2 consists of two interacted tracks: an atom-level track modeling both the local and global correlation between any two atoms, and a pair-level track modeling the correlation between all atom pairs, which embed information between any 3 or 4 atoms. Extensive experiments demonstrated the superiority of GEM-2 over multiple baseline methods in quantum chemistry and drug discovery tasks.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
06/25/2019

Molecular Property Prediction: A Multilevel Quantum Interactions Modeling Perspective

Predicting molecular properties (e.g., atomization energy) is an essenti...
research
07/16/2021

Property-aware Adaptive Relation Networks for Molecular Property Prediction

Molecular property prediction plays a fundamental role in drug discovery...
research
10/24/2022

Factorized structure of the long-range two-electron integrals tensor and its application in quantum chemistry

We introduce two new approximation methods for the numerical evaluation ...
research
12/23/2021

On the Reception Process of Molecular Communication-Based Drug Delivery

One of the important applications of molecular communication is the targ...
research
08/23/2021

C5T5: Controllable Generation of Organic Molecules with Transformers

Methods for designing organic materials with desired properties have hig...
research
09/30/2022

Equivariant Energy-Guided SDE for Inverse Molecular Design

Inverse molecular design is critical in material science and drug discov...
research
07/20/2023

Massively parallel quantum chemistry: PFAS on over 1 million cloud vCPUs

Accurate solutions to the electronic Schrödinger equation can provide va...

Please sign up or login with your details

Forgot password? Click here to reset