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Published on: April 6, 2015
Screening and characterization of EGFR-targeted specific nanobodies
Jing Geng1, Long Sha1, Yan Liu2
1College of Food Science and Technology, Shanghai Ocean University, 201306, Shanghai, China.
Abstract:
The epidermal growth factor receptor (EGFR), also known as HER1 or ErbB1, is a member of the ErbB receptor family. It plays a critical role in epidermal growth factor (EGF)-mediated cell proliferation and signal transduction pathways. Mutations or overexpression of EGFR are closely associated with the development and progression of various solid tumors, making it an important molecular target for tumor-targeted therapy. In this study, we prepared and purified the extracellular domain of EGFR using a eukaryotic expression system with a C-terminal Avi tag, and utilized it as a biotinylated antigen for phage display screening and subsequent biochemical analyses. Using an anti-EGFR camelid immune nanobody library previously constructed in our laboratory, we performed biopanning against the purified EGFR extracellular domain via phage display technology. Through phage ELISA, sequence analysis, soluble expression screening, and further biochemical characterization, several nanobody candidates with specific binding to EGFR were identified. Among these, the representative clone NB1B3 was selected for in-depth analysis using ELISA, biolayer interferometry (BLI), and EGF competition assays. BLI-based binding kinetics revealed that the clone exhibits nanomolar affinity, while competitive ELISA demonstrated its ability to effectively compete with EGF for EGFR binding in vitro, indicating its potential inhibitory function. Taken together, these results identify NB1B3 as an EGFR-binding nanobody candidate with preliminary biochemical evidence of competition with EGF. Although its precise epitope and cellular activity remain to be determined, this study provides an experimentally supported candidate and a screening workflow for further anti-EGFR nanobody development.
Insights
Researchers developed a novel nanobody, NB1B3, targeting the epidermal growth factor receptor (EGFR). This nanobody shows high affinity and competes with EGF, indicating potential for cancer therapy development.
Area of Science:
- Biochemistry
- Molecular Biology
- Immunology
Background:
- Epidermal growth factor receptor (EGFR) is crucial in cell growth and implicated in various solid tumors.
- EGFR is a key molecular target for developing novel anti-cancer therapies.
Purpose of the Study:
- To identify and characterize novel nanobodies targeting the extracellular domain of EGFR.
- To evaluate the binding affinity and inhibitory potential of selected nanobodies against EGFR.
Main Methods:
- Purification of the extracellular domain of EGFR using a eukaryotic expression system.
- Phage display technology for screening an anti-EGFR camelid immune nanobody library.
- Biochemical characterization including ELISA, BLI, and EGF competition assays for selected nanobodies.
Main Results:
- Identification of several nanobody candidates with specific binding to EGFR.
- The representative nanobody NB1B3 demonstrated nanomolar affinity for EGFR.
- NB1B3 effectively competed with EGF for EGFR binding in vitro, suggesting inhibitory potential.
Conclusions:
- NB1B3 is a promising EGFR-binding nanobody candidate with potential therapeutic applications.
- The study provides a validated workflow for developing anti-EGFR nanobodies.
- Further studies are needed to determine the epitope and cellular activity of NB1B3.
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