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Isolation and characterization of a novel human scFv inhibiting EGFR vIII expressing cancers
Leila Rahbarnia1, Safar Farajnia2, Hossein Babaei2
1Drug Applied Research Center, Tabriz University of Medical Sciences, Tabriz, Iran; Student research committee, University of Medical Sciences, Tabriz, Iran.
Abstract:
EGFRvIII, a mutant form of epidermal growth factor receptor is highly expressed in glioblastoma, carcinoma of the breast, ovary, and lung but not in normal cells. This tumor specific antigen has emerged as a promising candidate for antibody based therapy of several cancers. The aim of the present study was isolation and characterization of a human single chain antibody against EGFRvIII as a promising target for cancer therapy. For this, a synthetic peptide corresponding to EGFRvIII protein was used for screening the naive human scFv phage library. Selection was performed using a novel screening strategy for enrichment of rare specific clones. After five rounds of screening, six positive scFv clones against EGFRvIII were selected using monoclonal phage ELISA, among them, a clone with an amber mutation in VH CDR2 coding sequence showed higher reactivity. The mutation was corrected through site directed mutagenesis and then scFv fragment was expressed after subcloning into the bacterial expression vector. Expression in BL21 pLysS resulted in a highly soluble scFv appeared in soluble fraction of E. coli lysate. Bioinformatic in silico analysis between scFv and EGFRvIII sequences confirmed specific binding of desired scFv to EGFRvIII in CDR regions. The specific reactivity of the purified scFv with native EGFRvIII was confirmed by cell based ELISA and western blot. In conclusion, human anti- EGFRvIII scFv isolated from a scFv phage library displayed high reactivity with EGFRvIII. The scFv isolated in this study can be the groundwork for developing more effective diagnostic and therapeutic agents against EGFRvIII expressing cancers.
Insights
Researchers isolated a human single-chain antibody (scFv) targeting the EGFRvIII protein, a marker for glioblastoma and other cancers. This antibody shows high reactivity and potential for developing new cancer therapies.
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- Epidermal growth factor receptor variant III (EGFRvIII) is a tumor-specific antigen overexpressed in glioblastoma and other cancers.
- EGFRvIII presents a promising target for antibody-based cancer therapies due to its restricted expression in normal tissues.
Purpose of the Study:
- To isolate and characterize a human single-chain variable fragment (scFv) antibody targeting EGFRvIII.
- To establish a foundation for developing novel diagnostic and therapeutic agents against EGFRvIII-expressing cancers.
Main Methods:
- Screening a naive human scFv phage display library using a synthetic peptide of EGFRvIII.
- Employing a novel screening strategy for rare clone enrichment, followed by monoclonal phage ELISA.
- Site-directed mutagenesis to correct a VH CDR2 mutation, bacterial expression, and purification of the scFv.
- Validation using in silico analysis, cell-based ELISA, and Western blot to confirm specific binding to native EGFRvIII.
Main Results:
- Six specific scFv clones against EGFRvIII were identified after five screening rounds.
- A high-reactivity clone with a corrected amber mutation in VH CDR2 was selected and expressed as a soluble protein.
- Bioinformatic analysis and experimental validation confirmed the scFv's specific binding to EGFRvIII in CDR regions and native protein.
Conclusions:
- A human anti-EGFRvIII scFv with high reactivity was successfully isolated from a phage display library.
- The characterized scFv serves as a promising basis for developing advanced diagnostic and therapeutic tools for EGFRvIII-positive cancers.
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