Comprehensive proximity proteomics expand the known interactome of the oncoprotein β-catenin

The oncoprotein β-catenin has critical roles in cell adhesion and cell signalling. β-catenin affects human physiology and pathology through numerous interaction partners, of which many have been discovered by standard affinity purification-based proteomics. However, the interaction landscape of β-catenin remains incompletely understood, highlighting a need for new experimental approaches for the exploration of β-catenin biology. Proximity proteomics, which facilitate the discovery of molecules vicinal to proteins-of-interest by mass spectrometry, have recently emerged as a powerful complementary tool for the study of protein-protein interactions, but have not been applied to β-catenin so far. We investigated the interactome of β-catenin in model cell lines by proximity proteomics using expression constructs with the biotin ligases BioID and TurboID. Mass spectrometry analyses following biotin labelling identified numerous candidate interactors of β-catenin, including many that had not been observed in earlier studies using standard proteomics. Enrichment analyses suggested that proximity proteomics capture proteins associated with the known biological functions of β-catenin, including cell adhesion, Wnt/β-catenin signalling, and transcription regulation. The molecular tools and data generated in this study provide new insights into β-catenin biology and highlight potential new regulators of β-catenin function that warrant further exploration.

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Journal
Scientific Reports
Published
2026-09-01
DOI
https://doi.org/10.1038/s41598-026-68008-5
Primary Topic
Wnt/β-catenin signaling in development and cancer
Type
article
Field-Weighted Citation Impact
0.00

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article

Comprehensive proximity proteomics expand the known interactome of the oncoprotein β-catenin

Lavanya Moparthi, Stefan Koch, Wenjing Zhong
Scientific Reports
Wnt/β-catenin signaling in development and cancer
article

Comprehensive proximity proteomics expand the known interactome of the oncoprotein β-catenin

Lavanya Moparthi, Stefan Koch, Wenjing Zhong
article en

Abstract

The oncoprotein β-catenin has critical roles in cell adhesion and cell signalling. β-catenin affects human physiology and pathology through numerous interaction partners, of which many have been discovered by standard affinity purification-based proteomics. However, the interaction landscape of β-catenin remains incompletely understood, highlighting a need for new experimental approaches for the exploration of β-catenin biology. Proximity proteomics, which facilitate the discovery of molecules vicinal to proteins-of-interest by mass spectrometry, have recently emerged as a powerful complementary tool for the study of protein-protein interactions, but have not been applied to β-catenin so far. We investigated the interactome of β-catenin in model cell lines by proximity proteomics using expression constructs with the biotin ligases BioID and TurboID. Mass spectrometry analyses following biotin labelling identified numerous candidate interactors of β-catenin, including many that had not been observed in earlier studies using standard proteomics. Enrichment analyses suggested that proximity proteomics capture proteins associated with the known biological functions of β-catenin, including cell adhesion, Wnt/β-catenin signalling, and transcription regulation. The molecular tools and data generated in this study provide new insights into β-catenin biology and highlight potential new regulators of β-catenin function that warrant further exploration.

Scientific ReportsVol. 16(1)
Linköping University (SE)
Linköpings Universitet
Openalex Percentile: Top 18%
Wnt/β-catenin signaling in development and cancer
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Comprehensive proximity proteomics expand the known interactome of the oncoprotein β-catenin — Lavanya Moparthi, Stefan Koch, et al. · Scientific Reports (2026) | TGRS Research Map | TGRS