most citedA deep reinforcement learning platform for antibiotic discovery

1 citations · 1 across the 4 of their papers we have counts for

collaborators

6 papers

q-bio.BM2026

Bi-TEAM: A Unified Cross-Scale Representation Learning Framework for Chemically Modified Biomolecules

Chunbin Gu, Zijun Gao, Mutian He +8

Representation learning for protein biochemical space faces a difficult trade-off: protein language models excel at capturing long-range biological semantics but often miss fine-gr…

cs.CV2025

Seedance 1.5 pro: A Native Audio-Visual Joint Generation Foundation Model

Team Seedance, Heyi Chen, Siyan Chen +194

Recent strides in video generation have paved the way for unified audio-visual generation. In this work, we present Seedance 1.5 pro, a foundational model engineered specifically f…

q-bio.BM2025

CONFIDE: Hallucination Assessment for Reliable Biomolecular Structure Prediction and Design

Zijun Gao, Mutian He, Shijia Sun +8

Reliable evaluation of protein structure predictions remains challenging, as metrics like pLDDT capture energetic stability but often miss subtle errors such as atomic clashes or c…

cs.CE2025

Learning the PTM Code through a Coarse-to-Fine, Mechanism-Aware Framework

Jingjie Zhang, Hanqun Cao, Zijun Gao +8

Post-translational modifications (PTMs) form a combinatorial "code" that regulates protein function, yet deciphering this code - linking modified sites to their catalytic enzymes -…

cs.LG20251 cited

A deep reinforcement learning platform for antibiotic discovery

Hanqun Cao, Marcelo D. T. Torres, Jingjie Zhang +8

Antimicrobial resistance (AMR) is projected to cause up to 10 million deaths annually by 2050, underscoring the urgent need for new antibiotics. Here we present ApexAmphion, a deep…

cs.CE2025

SAGEPhos: Sage Bio-Coupled and Augmented Fusion for Phosphorylation Site Detection

Jingjie Zhang, Hanqun Cao, Zijun Gao +2

Phosphorylation site prediction based on kinase-substrate interaction plays a vital role in understanding cellular signaling pathways and disease mechanisms. Computational methods…