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  • Braig, Friederike; Kriegs, Malte; Voigtlaender, Minna; Habel, Beate; Grob, Tobias; Biskup, Karina; Blanchard, Veronique; Sack, Markus; Thalhammer, Anja; Ben Batalla, Isabel; Braren, Ingke; Laban, Simon; Danielczyk, Antje; Goletz, Steffen; Jakubowicz, Elzbieta; Märkl, Bruno; Trepel, Martin; Knecht, Rainald; Riecken, Kristoffer; Fehse, Boris; Loges, Sonja; Bokemeyer, Carsten; Binder, Mascha

    Cancer research (Chicago, Ill.), 03/2017, Letnik: 77, Številka: 5
    Journal Article

    Head and neck squamous cell carcinomas (HNSCC) exhibiting resistance to the EGFR-targeting drug cetuximab poses a challenge to their effective clinical management. Here, we report a specific mechanism of resistance in this setting based upon the presence of a single nucleotide polymorphism encoding EGFR-K (K-allele), which is expressed in >40% of HNSCC cases. Patients expressing the K-allele showed significantly shorter progression-free survival upon palliative treatment with cetuximab plus chemotherapy or radiation. In several EGFR-mediated cancer models, cetuximab failed to inhibit downstream signaling or to kill cells harboring a high K-allele frequency. Cetuximab affinity for EGFR-K was reduced slightly, but ligand-mediated EGFR activation was intact. We found a lack of glycan sialyation on EGFR-K that associated with reduced protein stability, suggesting a structural basis for reduced cetuximab efficacy. CetuGEX, an antibody with optimized Fc glycosylation targeting the same epitope as cetuximab, restored HNSCC sensitivity in a manner associated with antibody-dependent cellular cytotoxicity rather than EGFR pathway inhibition. Overall, our results highlight EGFR-K expression as a key mechanism of cetuximab resistance to evaluate prospectively as a predictive biomarker in HNSCC patients. Further, they offer a preclinical rationale for the use of ADCC-optimized antibodies to treat tumors harboring this EGFR isoform. .