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Curvature-Guided Geometric Representation for Protein-Ligand Binding Affinity Prediction

About

Protein-ligand binding affinity (PLA) prediction is critical in drug discovery. Despite the notable advancements in machine learning-based approaches, existing methods struggle to jointly characterize local geometric organization and globally coordinated cross-molecular interactions, limiting their ability to model complex binding mechanisms. Here, we propose RicciBind, a geometric representation framework that integrates curvature-guided hierarchical structure learning with optimal transport (OT)-based cross-domain alignment to model molecular interactions. Specifically, RicciBind leverages Ricci curvature to capture local interaction tightness within molecular structures, enhancing structural awareness and organizing atomic interactions into curvature-aware hierarchical representations. An OT-based cluster matching mechanism then aligns protein and ligand clusters across heterogeneous domains under geometric constraints, enabling globally consistent correspondences and revealing higher-order interaction patterns beyond local neighborhoods. By coupling curvature-guided structure encoding with OT-driven cross-domain alignment, RicciBind effectively models complex interaction semantics and substantially improves both the accuracy and interpretability of binding affinity prediction. Extensive experiments demonstrate that RicciBind achieved superior predictive performance and generalization across PLA benchmarks and virtual screening tasks. Ablation studies further confirmed the essential role of Ricci curvature in enhancing molecular interaction representations.

Shuai Li, Chuan-Xian Ren, Yuhao Li, Ziqi Huang, Yue Pan, Mingzhe Tang, Hong Yan• 2026

Related benchmarks

TaskDatasetResultRank
Protein-ligand binding affinity predictionPDBbind Sequence Identity (30%) 2017
RMSE1.437
82
Protein-ligand binding affinity predictionPDBbind core set 2013
RMSE1.259
41
Protein-ligand binding affinity predictionPDBbind 2019 (holdout set)
RMSE1.335
38
Binding affinity predictionPDBbind 2016 (core set)
RMSE1.128
22
Binding affinity predictionpdbbind (random split)
RMSE1.214
11
Binding affinity predictionpdbbind (scaffold)
RMSE1.248
11
Structure-Based Virtual ScreeningLIT-PCBA PKM2
EF1%9.55
8
Structure-Based Virtual ScreeningLIT-PCBA FEN1
Enrichment Factor (EF1%)42.19
8
Structure-Based Virtual ScreeningLIT-PCBA KAT2A
EF @ 1%12.5
8
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