IJCAI 20260 citations

TTS-Design: Test-Time Compute Scaling for Structure-Guided Protein Design

Zizhe Jin, Yizhen Zheng, Huan Yee Koh, Jiaxin Ju, Jiapu Wang, Shirui Pan

Abstract

Generating protein sequences that reliably fold into target structures is a central challenge in computational biology and protein design. Progress in protein inverse folding (PIF), however, is fundamentally constrained by the scarcity of high-quality structural data, which limits the effectiveness of existing models. In this work, we propose TTS-Design, a test-time compute scaling framework that enhances protein sequence design without retraining models or relying on larger training data. For TTS-Design, its core design is a dedicated inverse folding reward model named IF-RM, which quantitatively evaluates structure–sequence compatibility and enables effective selection among multiple candidate sequences at inference time. By integrating IF-RM into existing PIF models, TTS-Design leverages additional computation during inference stage to explore and refine candidate solutions. Extensive experiments on the CATH 4.2 and CATH 4.3 demonstrate that TTS-Design consistently improves sequence recovery and structural reliability across different backbone models, without retraining or increasing model size. Case studies on real-world proteins further confirm its practical effectiveness. Overall, our results highlight test-time compute scaling as a promising and effective paradigm for advancing protein inverse folding and other scientific problems under data-limited scenarios.

Multidisciplinary Topics and Applications: BioinformaticsMultidisciplinary Topics and Applications: Health and medicineAI: Machine LearningMachine Learning: Sequence and graph learning
BibTeX
@inproceedings{ijcai2026_ttsdesigntesttim,
  title = {TTS-Design: Test-Time Compute Scaling for Structure-Guided Protein Design},
  author = {Zizhe Jin and Yizhen Zheng and Huan Yee Koh and Jiaxin Ju and Jiapu Wang and Shirui Pan},
  booktitle = {IJCAI 2026},
  year = {2026}
}
TTS-Design: Test-Time Compute Scaling for Structure-Guided Protein Design · IJCAI 2026