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5 months ago

Triplet Interaction Improves Graph Transformers: Accurate Molecular Graph Learning with Triplet Graph Transformers

Md Shamim Hussain; Mohammed J. Zaki; Dharmashankar Subramanian

Triplet Interaction Improves Graph Transformers: Accurate Molecular Graph Learning with Triplet Graph Transformers

Abstract

Graph transformers typically lack third-order interactions, limiting their geometric understanding which is crucial for tasks like molecular geometry prediction. We propose the Triplet Graph Transformer (TGT) that enables direct communication between pairs within a 3-tuple of nodes via novel triplet attention and aggregation mechanisms. TGT is applied to molecular property prediction by first predicting interatomic distances from 2D graphs and then using these distances for downstream tasks. A novel three-stage training procedure and stochastic inference further improve training efficiency and model performance. Our model achieves new state-of-the-art (SOTA) results on open challenge benchmarks PCQM4Mv2 and OC20 IS2RE. We also obtain SOTA results on QM9, MOLPCBA, and LIT-PCBA molecular property prediction benchmarks via transfer learning. We also demonstrate the generality of TGT with SOTA results on the traveling salesman problem (TSP).

Code Repositories

shamim-hussain/egt_triangular
pytorch
Mentioned in GitHub
shamim-hussain/egt_pytorch
pytorch
Mentioned in GitHub
shamim-hussain/tgt
Official
pytorch
Mentioned in GitHub

Benchmarks

BenchmarkMethodologyMetrics
drug-discovery-on-lit-pcba-aldh1EGT+TGT-At-DP
AUC: 0.806
drug-discovery-on-lit-pcba-kat2aEGT+TGT-At-DP
AUC: 0.746
drug-discovery-on-lit-pcba-mapk1EGT+TGT-At-DP
AUC: 0.743
graph-property-prediction-on-ogbg-molpcbaTGT-Ag+TGT-At-DP
Ext. data: Yes
Number of params: 47000000
Test AP: 0.3167 ± 0.0031
graph-regression-on-pcqm4mv2-lscTGT-At
Test MAE: 0.0683
Validation MAE: 0.0671
link-prediction-on-tsp-hcp-benchmark-setTGT-Agx4
F1: 0.871

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Triplet Interaction Improves Graph Transformers: Accurate Molecular Graph Learning with Triplet Graph Transformers | Papers | HyperAI