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◇ bioRxiv2026-08-26· cancer biology

Alternative splicing expands and remodels the breast cancer proteoform landscape

F. T. Jiang, R. Zhao, X. Wang, H. Hao, F. Liang, Y. Zhang, T. Cui, Z. Tang, T. Luo, H. Yao, M. Xu, C. Xu, Z. Wang, J. Xu, W. Zhang, X. Wang

一句话结论 · In one sentence

Developed 3DisoGalaxy atlas to study alternative splicing in breast cancer proteome. 58,292 transcripts linked to translation-supported ORFs, 71.9% arising from non-canonical structures. Alternative splicing expands the translated proteome by remodelling domains and regulatory motifs.

原始摘要(英文原文)· Original abstract
Alternative splicing generates extensive transcript diversity, but the extent to which this diversity contributes to the translated proteome and reshapes protein function remains unclear. Here, we develop 3DisoGalaxy, an atlas integrating transcript reconstruction, ribosome profiling, structural modelling and regulatory annotation in breast cancer. We find that 58,292 of 90,929 transcripts are linked to translation-supported ORFs, 71.9% of which arise from non-canonical transcript structures. These products are broadly accommodated within established protein fold space, indicating that alternative isoforms frequently preserve recognizable protein architectures despite substantial sequence variation. Functional divergence is instead concentrated in domains, intrinsically disordered regions, localization determinants and regulatory motifs. Motif remodelling is biased towards gains and is more extensive in cancer-driver genes than in other genes, linking isoform-associated regulatory variation to cancer-relevant proteins. As an example of domain remodelling, we identify an AKT1-{Delta}PH isoform that lacks the N-terminal PH domain while retaining the kinase core, with immunoblotting revealing a lower-molecular-weight AKT1 species consistent with this isoform. Together, our results show that alternative transcript diversity extensively enters translation-supported proteoform space and establish a systematic link between transcript variation and protein functional diversification.
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Alternative splicing expands and remodels the breast cancer proteoform landscape — 科研速览 Science Skim