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Updated: Apr 5, 2026

Studying TGF-β Signaling and TGF-β-induced Epithelial-to-mesenchymal Transition in Breast Cancer and Normal Cells
Published on: October 27, 2020
PEAK1 Acts as a Molecular Switch to Regulate Context-Dependent TGFβ Responses in Breast Cancer
Megan Agajanian1, Anaamika Campeau1, Malachia Hoover1
1Department of Biology, California State University Northridge, Northridge, CA 91330, United States of America.
Abstract:
Transforming Growth Factor β (TGFβ) has dual functions as both a tumor suppressor and a promoter of cancer progression within the tumor microenvironment, but the molecular mechanisms by which TGFβ signaling switches between these outcomes and the contexts in which this switch occurs remain to be fully elucidated. We previously identified PEAK1 as a new non-receptor tyrosine kinase that associates with the cytoskeleton, and facilitates signaling of HER2/Src complexes. We also showed PEAK1 functions downstream of KRas to promote tumor growth, metastasis and therapy resistance using preclinical in vivo models of human tumor progression. In the current study, we analyzed PEAK1 expression in human breast cancer samples and found PEAK1 levels correlate with mesenchymal gene expression, poor cellular differentiation and disease relapse. At the cellular level, we also observed that PEAK1 expression was highest in mesenchymal breast cancer cells, correlated with migration potential and increased in response to TGFβ-induced epithelial-mesenchymal transition (EMT). Thus, we sought to evaluate the role of PEAK1 in the switching of TGFβ from a tumor suppressing to tumor promoting factor. Notably, we discovered that high PEAK1 expression causes TGFβ to lose its anti-proliferative effects, and potentiates TGFβ-induced proliferation, EMT, cell migration and tumor metastasis in a fibronectin-dependent fashion. In the presence of fibronectin, PEAK1 caused a switching of TGFβ signaling from its canonical Smad2/3 pathway to non-canonical Src and MAPK signaling. This report is the first to provide evidence that PEAK1 mediates signaling cross talk between TGFβ receptors and integrin/Src/MAPK pathways and that PEAK1 is an important molecular regulator of TGFβ-induced tumor progression and metastasis in breast cancer. Finally, PEAK1 overexpression/upregulation cooperates with TGFβ to reduce breast cancer sensitivity to Src kinase inhibition. These findings provide a rational basis to develop therapeutic agents to target PEAK1 expression/function or upstream/downstream pathways to abrogate breast cancer progression.
Insights
PEAK1 kinase promotes breast cancer progression by switching Transforming Growth Factor β (TGFβ) signaling from tumor suppression to tumor promotion, enhancing metastasis and therapy resistance.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Transforming Growth Factor β (TGFβ) exhibits dual roles in cancer, acting as both a tumor suppressor and a promoter of tumor progression.
- The precise molecular mechanisms and contextual factors governing TGFβ's functional switch remain incompletely understood.
- PEAK1, a non-receptor tyrosine kinase, has been implicated in promoting tumor growth, metastasis, and therapy resistance downstream of KRas.
Purpose of the Study:
- To investigate the role of PEAK1 in mediating the switch of TGFβ signaling from tumor suppression to tumor promotion in breast cancer.
- To elucidate the molecular pathways through which PEAK1 influences TGFβ-driven cancer progression.
Main Methods:
- Analysis of PEAK1 expression in human breast cancer samples.
- Cellular assays to assess the impact of PEAK1 on TGFβ-induced epithelial-mesenchymal transition (EMT), proliferation, and migration.
- Investigation of signaling pathways (Smad2/3, Src, MAPK) involved in TGFβ and PEAK1 crosstalk.
- Preclinical in vivo models to evaluate metastasis and response to therapy.
Main Results:
- PEAK1 expression correlates with mesenchymal gene expression, poor differentiation, and relapse in breast cancer.
- High PEAK1 expression abrogates TGFβ's anti-proliferative effects and potentiates TGFβ-induced proliferation, EMT, migration, and metastasis, particularly in a fibronectin-dependent manner.
- PEAK1 facilitates a switch in TGFβ signaling from the canonical Smad2/3 pathway to non-canonical Src and MAPK pathways.
- PEAK1 overexpression cooperates with TGFβ to decrease breast cancer sensitivity to Src kinase inhibition.
Conclusions:
- PEAK1 is a critical mediator of TGFβ-induced breast cancer progression and metastasis.
- PEAK1 integrates signals between TGFβ receptors and integrin/Src/MAPK pathways.
- Targeting PEAK1 or its associated pathways offers a potential therapeutic strategy to counteract breast cancer progression.
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