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Updated: May 8, 2026

Deciphering the Structural Effects of Activating EGFR Somatic Mutations with Molecular Dynamics Simulation
Published on: May 20, 2020
Tyrosine 1045 codon mutations in exon 27 of EGFR are infrequent in oral squamous cell carcinomas
Mehta Dhaval Tushar1, Arvind Ramanathan
1Human Genetics Laboratory, Sree Balaji Medical and Dental College and Hospital, Bharath University, Chennai, India. drarvindram@yahoo.co.in
Background:
The activation and inactivation of receptor tyrosine kinases are tightly regulated to ensure faithful replication of cells. After having transduced extracellular growth activating signals, activated EGFR is subjected to downregulation either by clathrin mediated endocytosis or c-Cbl mediated proteasome degradation depending on the ligand concentration. c-Cbl is an ubiquitin ligase which requires a phosphorylated tyrosine residue at position 1045 in the cytoplasmic domain of EGFR to interact and add ubiquitin molecules. While activating mutations in exons 19 and 21 have been associated with the development of several cancers, the status of mutations at tyrosine 1045 coding exon 27 of EGFR remain to be investigated. Consistently, defective phosphorylation at 1045 has been associated with sustained phosphorylation of EGFR in non-small lung carcinomas. Hence in the present study we investigated the genetic status of the tyrosine 1045 coding site within exon 27 of EGFR gene to explore for possible occurrence of mutations in this region, especially since no studies have addressed this issue so far.
Materials And Methods:
Tumor chromosomal DNA isolated from thirty five surgically excised oral squamous cell carcinoma tissues was subjected to PCR amplification with intronic primers flanking the tyrosine 1045 coding exon 27 of EGFR gene. The PCR amplicons were subsequently subjected to direct sequencing to elucidate the mutation status.
Results:
Sequence analysis identified no mutations in the tyrosine 1045 codon of EGFR in any of the thirty five samples that were analyzed.
Conclusions:
The lack of identification of mutation in the tyrosine 1045 codon of EGFR suggests that mutations in this region may be relatively rare in oral squamous cell carcinomas. To the best of our knowledge, this study is the first to have explored the genetic status of exon 27 of EGFR in oral squamous cell carcinoma tissue samples.
Insights
This study investigated mutations in exon 27 of the Epidermal Growth Factor Receptor (EGFR) gene, specifically the tyrosine 1045 codon, in oral squamous cell carcinomas. No mutations were found, suggesting this region is rarely altered in this cancer type.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Epidermal Growth Factor Receptor (EGFR) signaling is crucial for cell replication and tightly regulated.
- EGFR inactivation occurs via endocytosis or c-Cbl mediated proteasome degradation, requiring phosphorylation at tyrosine 1045.
- Activating EGFR mutations in exons 19 and 21 are linked to cancer, but exon 27 (tyrosine 1045) mutations remain unexplored.
Purpose of the Study:
- To investigate the genetic status of the tyrosine 1045 coding site within exon 27 of the EGFR gene.
- To explore the potential occurrence of mutations in this specific EGFR region in oral squamous cell carcinomas.
Main Methods:
- Tumor DNA was isolated from 35 oral squamous cell carcinoma tissues.
- PCR amplification of exon 27 of the EGFR gene was performed using intronic primers.
- Direct sequencing of PCR amplicons was used to determine mutation status.
Main Results:
- Sequence analysis revealed no mutations in the tyrosine 1045 codon of EGFR.
- This finding was consistent across all 35 analyzed oral squamous cell carcinoma samples.
Conclusions:
- Mutations in the tyrosine 1045 codon of EGFR appear to be rare in oral squamous cell carcinomas.
- This study represents the first investigation into the genetic status of EGFR exon 27 in oral squamous cell carcinoma.
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