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CUB domain-containing protein 1 and the epidermal growth factor receptor cooperate to induce cell detachment
Mary E Law1,2, Renan B Ferreira3, Bradley J Davis1,2
1Department of Pharmacology and Therapeutics, University of Florida, Acad. Res. Bldg., Room R5-210, 1200 Newell Drive, P.O. Box 100267, Gainesville, FL, 32610, USA.
Background:
While localized malignancies often respond to available therapies, most disseminated cancers are refractory. Novel approaches, therefore, are needed for the treatment of metastatic disease. CUB domain-containing protein1 (CDCP1) plays an important role in metastasis and drug resistance; the mechanism however, is poorly understood.
Methods:
Breast cancer cell lines were engineered to stably express EGFR, CDCP1 or phosphorylation site mutants of CDCP1. These cell lines were used for immunoblot analysis or affinity purification followed by immunoblot analysis to assess protein phosphorylation and/or protein complex formation with CDCP1. Kinase activity was evaluated using phosphorylation site-specific antibodies and immunoblot analysis in in vitro kinase assays. Protein band excision and mass spectrometry was utilized to further identify proteins complexed with CDCP1 or ΔCDCP1, which is a mimetic of the cleaved form of CDCP1. Cell detachment was assessed using cell counting.
Results:
This paper reports that CDCP1 forms ternary protein complexes with Src and EGFR, facilitating Src activation and Src-dependent EGFR transactivation. Importantly, we have discovered that a class of compounds termed Disulfide bond Disrupting Agents (DDAs) blocks CDCP1/EGFR/Src ternary complex formation and downstream signaling. CDCP1 and EGFR cooperate to induce detachment of breast cancer cells from the substratum and to disrupt adherens junctions. Analysis of CDCP1-containing complexes using proteomics techniques reveals that CDCP1 associates with several proteins involved in cell adhesion, including adherens junction and desmosomal cadherins, and cytoskeletal elements.
Conclusions:
Together, these results suggest that CDCP1 may facilitate loss of adhesion by promoting activation of EGFR and Src at sites of cell-cell and cell-substratum contact.
Insights
CUB domain-containing protein 1 (CDCP1) forms complexes with Src and EGFR, promoting cancer metastasis. Disulfide bond disrupting agents block this complex, offering a potential new therapy for metastatic breast cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Disseminated cancers are difficult to treat, necessitating novel therapeutic strategies.
- CUB domain-containing protein 1 (CDCP1) is implicated in cancer metastasis and drug resistance, but its precise role remains unclear.
- Understanding CDCP1's mechanism is crucial for developing new treatments for metastatic disease.
Purpose of the Study:
- To elucidate the molecular mechanism by which CDCP1 contributes to cancer metastasis and drug resistance.
- To investigate the role of CDCP1 in protein complex formation and signaling pathways.
- To identify potential therapeutic targets for inhibiting CDCP1-mediated metastasis.
Main Methods:
- Engineered breast cancer cell lines expressing EGFR, CDCP1, or CDCP1 mutants.
- Immunoblot analysis and affinity purification to assess protein phosphorylation and complex formation.
- In vitro kinase assays and mass spectrometry to identify interacting proteins and signaling events.
- Cell detachment assays to evaluate the functional impact of CDCP1.
Main Results:
- CDCP1 forms ternary complexes with Src and EGFR, leading to Src activation and EGFR transactivation.
- Disulfide bond disrupting agents (DDAs) inhibit CDCP1/EGFR/Src complex formation and downstream signaling.
- CDCP1 and EGFR promote breast cancer cell detachment and adherens junction disruption.
- Proteomic analysis revealed CDCP1 association with cell adhesion proteins and cytoskeletal elements.
Conclusions:
- CDCP1 facilitates cancer cell detachment and metastasis by promoting EGFR and Src activation.
- Targeting CDCP1/EGFR/Src interactions with DDAs represents a promising therapeutic strategy for metastatic cancers.
- CDCP1's role in cell adhesion and signaling pathways offers new avenues for cancer treatment research.
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