Author:
Jain Ankit P.,Patel Krishna,Pinto Sneha,Radhakrishnan Aneesha,Nanjappa Vishalakshi,Kumar Manish,Raja Remya,Patil Arun H.,Kumari Anjali,Manoharan Malini,Karunakaran Coral,Murugan Saktivel,Keshava Prasad T. S.,Chang Xiaofei,Mathur Premendu Prakash,Kumar Prashant,Gupta Ravi,Gupta Rohit,Khanna-Gupta Arati,Sidransky David,Chatterjee Aditi,Gowda Harsha
Abstract
AbstractEpidermal growth factor receptor (EGFR) targeted therapies have shown limited efficacy in head and neck squamous cell carcinoma (HNSCC) patients despite its overexpression. Identifying molecular mechanisms associated with acquired resistance to EGFR-TKIs such as erlotinib remains an unmet need and a therapeutic challenge. In this study, we employed an integrated multi-omics approach to delineate mechanisms associated with acquired resistance to erlotinib by carrying out whole exome sequencing, quantitative proteomic and phosphoproteomic profiling. We observed amplification of several genes includingAXLkinase and transcription factorYAP1resulting in protein overexpression. We also observed expression of constitutively active mutant MAP2K1 (p.K57E) in erlotinib resistant SCC-R cells. An integrated analysis of genomic, proteomic and phosphoproteomic data revealed alterations in MAPK pathway and its downstream targets in SCC-R cells. We demonstrate that erlotinib-resistant cells are sensitive to MAPK pathway inhibition. This study revealed multiple genetic, proteomic and phosphoproteomic alterations associated with erlotinib resistant SCC-R cells. Our data indicates that therapeutic targeting of MAPK pathway is an effective strategy for treating erlotinib-resistant HNSCC tumors.
Publisher
Springer Science and Business Media LLC
Cited by
15 articles.
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