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Finnson, K.

Publications and source records attributed to Finnson, K..

2 recordsLinked to original sources

A CD109-SMURF2 Axis Diverts EGFR from Degradation to Sustain Oncogenic Signaling and Promote Squamous Cell Carcinoma Invasion and Stemness

Squamous cell carcinoma (SCC) remains difficult to treat, particularly in recurrent or metastatic disease. Although EGFR signaling is a well-established driver of SCC pathogenesis, mechanisms regulating its activity remain incompletely understood. CD109, a GPI-anchored glycoprotein frequently overexpressed in SCC, has been implicated in EGFR signaling, but its mechanisms remain poorly defined. Here, we show that CD109 is elevated in head and neck SCC (HNSCC) in the TCGA PanCancer Atlas and significantly correlates with reduced disease-free survival. Integrative transcriptomic (TCGA PanCancer Atlas) and proteomic (LinkedOmics) analyses revealed strong positive correlations between CD109, EGFR, and SMURF2. These findings were further validated by immunohistochemistry in HNSCC patient samples. Mechanistically, CD109 overexpression impaired EGFR degradation, suppressed degradation-associated EGFR pY1045 phosphorylation, and enhanced signaling-associated pY1068 phosphorylation, resulting in increased STAT3, AKT, and ERK signaling. We identify SMURF2 as a mediator of these effects, with CD109 promoting EGFR-SMURF2 complex formation. SMURF2 gain- and loss-of-function studies in SCC cells, demonstrated that SMURF2 stabilizes EGFR by reducing EGFR interaction with the ubiquitin ligase c-Cbl, thereby limiting EGFR turnover in a CD109-dependent manner. Functionally, the CD109-SMURF2-EGFR axis promotes EGF-induced stemness, invasion, and proliferation in SCC cells. Together, these findings identify CD109 as a molecular switch controlling EGFR fate by redirecting EGFR from c-Cbl-mediated degradation toward SMURF2-dependent stabilization, sustaining oncogenic signaling. This previously unrecognized regulatory pathway reveals the CD109-SMURF2 axis as a vulnerability with potential for targeted intervention in EGFR-driven SCCs.

cancer biology↗

Rewiring of EGFR oncogenic program by opposing actions of membrane versus soluble CD109 in HNSCC

The epidermal growth factor receptor (EGFR) expression is often dysregulated in head and neck squamous cell carcinoma (HNSCC), driving cancer cell proliferation, invasion, and metastasis through diverse pathways, thereby contributing to aggressive chemo- and radio-therapy resistance. A GPI-anchored protein, CD109 is upregulated in multiple cancers, including HNSCC. While membrane-anchored CD109 (mCD109) is pro-tumorigenic in SCC via EGFR/STAT3 activation, the role of protease-cleaved soluble CD109 (sCD109) is poorly understood. Our groundbreaking findings demonstrate that sCD109 antagonizes EGFR signaling by directly binding to the EGFR extracellular domain, preventing mCD109-EGFR stabilizing interactions on the cell surface, followed by inhibition of EGFR phosphorylation at Y1068 and downstream signaling cascades (AKT, MAPK, and STAT3) consequently suppressing cancer cell migration, invasion, 3D tumor spheroid formation and angiogenic tube formation. In addition, we found that sCD109 regulates EGFR fates by inhibiting nuclear localization of phosphorylated EGFR and promoting EGFR degradation. Additionally, sCD109 significantly reduces EGF-induced expression of cancer stem cell markers (CD44 and CD133) and embryonic stem cell markers (Nanog and Sox2), suggesting a suppressive role in cancer stemness. Taken together, these results underscore the opposing roles of mCD109 and sCD109: with sCD109 acting as an antagonist by inhibiting mCD109/EGFR-driven oncogenic signaling and phenotypes. Our current findings reveal a complex interplay among mCD109, sCD109, and EGFR, identifying a mechanism for targeting EGFRs degradation in HNSCC, and lay the groundwork for future research on investigating sCD109s modulatory role in preclinical models of HNSCC.

Cancer Biology↗