Beta-catenin
Beta-catenin is a multifunctional intracellular protein encoded by the CTNNB1 gene.
Beta-catenin is a multifunctional intracellular protein encoded by the CTNNB1 gene. It has two major biological roles. At the plasma membrane, beta-catenin links classical cadherins to the actin cytoskeleton and contributes to cell–cell adhesion. In the Wnt/beta-catenin pathway, it also functions as a transcriptional co-activator: Wnt pathway activation stabilizes cytoplasmic beta-catenin, allowing it to accumulate in the nucleus and regulate gene expression with T-cell factor/lymphoid enhancer factor transcription factors.
In the absence of an activating Wnt signal, beta-catenin is targeted for phosphorylation and degradation by a destruction complex that includes components such as AXIN, APC, and glycogen synthase kinase 3. Disruption of this regulatory system can cause persistent beta-catenin Signaling and is associated with abnormal cell proliferation, tissue remodeling, epithelial–mesenchymal transition (EMT), and malignant progression. Altered beta-catenin activity is particularly relevant to Cancers, including colorectal Cancer, and may interact with other Signaling systems such as Yes-associated protein 1 (YAP1) 1 (YAP1), mechanistic target of rapamycin (Mechanistic target of rapamycin (mTOR)), CD44-associated pathways, and signal-transducer and activator of transcription Signaling. Because beta-catenin participates in both adhesion and transcriptional regulation, its cellular distribution and expression are often assessed in tumor biology and targeted Cancer therapy research.
Rebuilt from PubMed 10 Sept 2026 · no new papers today
Where the papers sit
9 papers study beta-catenin directly. Those 9 do not group into themes. Network pharmacology, clinical pathology, traditional formulas, and nanotheranostics meet here without a shared disease or mechanism beyond occasional β-catenin-related signaling. No common research direction emerges. They are no more alike than papers drawn from anywhere in the corpus.
Recent Findings on beta-catenin
A 2026 study investigated a BODIPY-based nanotheranostic for osteosarcoma that combined photodynamic and photothermal actions. The work examined beta-catenin in the context of the YAP1/beta-catenin axis, linking this Signaling relationship to malignant progression and the EMT program. The reported mechanistic analyses indicated that the synergistic phototherapy suppressed the YAP1/beta-catenin axis, reversed EMT, and consequently inhibited osteosarcoma cell proliferation, migration, and invasion 42314525Jun. The study therefore positioned beta-catenin as part of a Signaling target combination affected by photochemotherapy, with reactive oxygen species and photothermal effects included in the broader therapeutic mechanism.
A study of advanced colorectal Cancer analyzed the IL-22/IL-22BP axis together with cell-adhesion molecules. Beta-catenin protein expression was evaluated alongside IL-22, IL-22BP, and claudin-1 (CLDN1) by immunohistochemistry on tissue microarrays 42527091Jul. In this setting, beta-catenin was examined as a marker related to cell adhesion and tumor-associated Signaling, rather than as an isolated pathway component. The investigation places beta-catenin within a broader colorectal-Cancer context involving epithelial junctional proteins, cytokine Signaling, and the Wnt/beta-catenin pathway 42527091Jul.
Written from 9 PubMed abstracts, each one cited by PMID above. Published: 2026-08-20. Drafted by language models from published abstracts; not medical advice.