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Nuclear transportation of exogenous epidermal growth factor receptor and androgen receptor via extracellular vesicles
Jolene Read1, Alistair Ingram1, Hassan A Al Saleh1
1Division of Nephrology, Department of Medicine, McMaster University, Hamilton, Canada.
Abstract:
Epidermal growth factor receptor (EGFR) plays a central role in the progression of several human malignancies. Although EGFR is a membrane receptor, it undergoes nuclear translocation, where it has a distinct signalling pathway. Herein, we report a novel mechanism by which cancer cells can directly transport EGFR to the nucleus of other cells via extracellular vesicles (EVs). The transported receptor is active and stimulates the nuclear EGFR pathways. Interestingly, the translocation of EGFR via EVs occurs independently of the nuclear localisation sequence that is required for nuclear translocation of endogenous EGFR. Also, we found that the mutant receptor EGFRvIII could be transported to the nucleus of other cells via EVs. To assess the role of EVs in the regulation of an actual nuclear receptor, we studied the regulation of androgen receptor (AR). We found that full-length AR and mutant variant ARv7 are secreted in EVs derived from prostate cancer cell lines and could be transported to the nucleus of AR-null cells. The EV-derived AR was able to bind the androgen-responsive promoter region of prostate specific antigen, and recruit RNA Pol II, an indication of active transcription. The nuclear-translocated AR via EVs enhanced the proliferation of acceptor cells in the absence of androgen. Finally, we provide evidence that nuclear localisation of AR could occur in vivo via orthotopically-injected EVs in male SCID mice prostate glands. To our knowledge, this is the first study showing the nuclear translocation of nuclear receptors via EVs, which significantly extends the role of EVs as paracrine transcriptional regulators.
Insights
Cancer cells transfer active epidermal growth factor receptor (EGFR) and androgen receptor (AR) to other cells
Area of Science:
- Cell biology
- Molecular oncology
- Cancer research
Background:
- Epidermal growth factor receptor (EGFR) is crucial in cancer progression.
- EGFR has distinct signaling pathways in the nucleus.
- Nuclear receptors like androgen receptor (AR) regulate gene expression.
Purpose of the Study:
- To investigate a novel mechanism of EGFR and AR nuclear translocation via extracellular vesicles (EVs).
- To determine if EV-mediated nuclear receptors are active and influence recipient cell function.
- To explore the in vivo relevance of EV-mediated nuclear receptor transfer.
Main Methods:
- Utilized cell culture models of cancer.
- Employed extracellular vesicle isolation and characterization techniques.
- Performed nuclear translocation assays, gene expression analysis, and in vivo studies in mice.
Main Results:
- Cancer cells secrete active EGFR and AR (full-length and variants) within EVs.
- EV-transported EGFR and AR translocate to the nucleus of recipient cells, independent of endogenous signals.
- EV-derived AR activates transcription and enhances proliferation in AR-null cells, with in vivo evidence in mice.
Conclusions:
- Extracellular vesicles mediate the direct transfer of functional EGFR and AR to recipient cell nuclei.
- This EV-mediated pathway bypasses canonical nuclear localization signals.
- EVs act as significant paracrine transcriptional regulators, impacting cancer progression and potentially offering therapeutic targets.
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