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Updated: May 26, 2026

Mass Spectrometry-Based Proteomics Analyses Using the OpenProt Database to Unveil Novel Proteins Translated from Non-Canonical Open Reading Frames
Published on: April 11, 2019
Out-of-distribution generalization enhances protein function annotation for low-homology sequences
Yiwei Fu1, Jiaxiao Chen2, Haoyu Lin2
1School of Mathematical Sciences, Peking University, No. 5, Yiheyuan Road, Haidian District, Beijing 100871, China.
None:
Understanding protein functions in biological processes is pivotal for disease elucidation and drug discovery. Despite notable progress, existing approaches primarily focus on function transfer under in-distribution (ID) settings, where training and test proteins exhibit high sequence similarity. As a result, their performance often degrades when applied to novel, diverse, and low-homology protein sequences, posing a major challenge for out-of-distribution (OOD) generalization encountered in practice. Towards this end, we develop ProteinScore, a graph transformer approach tailored to improve protein function prediction in OOD settings. ProteinScore integrates a label-invariant variational subgraph generator with self-supervised contrastive learning, thereby identifying meaning substructures within proteins. By highlighting informative features while filtering out redundant ones, ProteinScore improves generalization to diverse and low-homology sequences. Experiments on datasets with both experimentally resolved and AlphaFold2-predicted structures demonstrate that ProteinScore consistently outperforms strong baselines and provides biologically meaningful interpretability through accurately identifying binding sites. In addition, ProteinScore generalizes effectively to two additional downstream tasks, drug-target interaction classification and subcellular localization prediction, achieving superior predictive performance and reliable interpretability.
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