Related Experiment Video
Updated: Jul 16, 2025

Isolation of Primary Cancer-Associated Fibroblasts from a Syngeneic Murine Model of Breast Cancer for the Study of Targeted Nanoparticles
Published on: May 14, 2021
Targeting NANOG and FAK via Cx26-derived Cell-penetrating Peptides in Triple-negative Breast Cancer
Erin E Mulkearns-Hubert1,2, Emily Esakov Rhoades1, Salma Ben-Salem1
1Department of Cardiovascular and Metabolic Sciences, Cancer Impact Area, Lerner Research Institute, Cleveland Clinic Foundation, Cleveland, Ohio.
Abstract:
Triple-negative breast cancer (TNBC) represents the most lethal and treatment-resistant breast cancer subtype with limited treatment options. We previously identified a protein complex unique to TNBC composed of the gap junction protein connexin 26 (Cx26), the pluripotency transcription factor NANOG, and focal adhesion kinase (FAK). We sought to determine whether a peptide mimetic of the interaction region of Cx26 attenuated tumor growth in preclinical models. We designed peptides based on Cx26 juxtamembrane domains and performed binding experiments with NANOG and FAK using surface plasmon resonance. Binding studies revealed that the Cx26 C-terminal tail and intracellular loop bound to NANOG and FAK with submicromolar-to-micromolar affinity and that a 5-amino acid sequence in the C-terminal tail of Cx26 (RYCSG) was sufficient for binding. Peptides with high affinity were engineered with a cell-penetrating antennapedia sequence and assessed in functional assays including cell proliferation, tumorsphere formation, and in vivo tumor growth, and downstream signaling changes were measured. The cell-penetrating Cx26 peptide (aCx26-pep) disrupted self-renewal while reducing nuclear FAK and NANOG and inhibiting NANOG target gene expression in TNBC cells but not luminal mammary epithelial cells. In vivo, aCx26-pep reduced tumor growth and proliferation and induced cell death. Here, we provide proof-of-concept that a Cx26 peptide-based strategy inhibits growth and alters NANOG activity specifically in TNBC, indicating the therapeutic potential of this targeting approach.
Insights
A novel peptide targeting connexin 26 (Cx26) disrupts NANOG activity and inhibits triple-negative breast cancer (TNBC) growth. This Cx26 peptide shows therapeutic potential for treatment-resistant TNBC.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Triple-negative breast cancer (TNBC) is aggressive with limited therapeutic options.
- A unique TNBC protein complex involves connexin 26 (Cx26), NANOG, and focal adhesion kinase (FAK).
Purpose of the Study:
- To investigate if a peptide mimetic of Cx26 can inhibit TNBC growth.
- To evaluate the therapeutic potential of targeting the Cx26-NANOG-FAK complex.
Main Methods:
- Designed Cx26-based peptides and assessed binding affinity to NANOG and FAK via surface plasmon resonance.
- Engineered cell-penetrating peptides and evaluated their effects on TNBC cell proliferation, tumorsphere formation, and in vivo tumor growth.
- Measured downstream signaling changes, including NANOG target gene expression.
Main Results:
- A 5-amino acid sequence (RYCSG) in Cx26's C-terminal tail was sufficient for binding NANOG and FAK.
- The cell-penetrating peptide (aCx26-pep) specifically inhibited TNBC cell self-renewal, reduced nuclear FAK/NANOG, and suppressed NANOG target genes.
- In vivo, aCx26-pep significantly reduced tumor growth, proliferation, and induced cell death in TNBC models.
Conclusions:
- A Cx26 peptide-based strategy effectively inhibits TNBC growth and modulates NANOG activity.
- This approach demonstrates significant therapeutic potential for targeting treatment-resistant TNBC.

