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A robust antibody discovery platform for difficult-to-express G protein-coupled receptors
Authors:Nam Hyuk Kim  Sumin Kang  Ga Hyeon Park  Goeun Shim  Tae Hyun Kang  Yeon Gyu Yu
Institution:1. Department of Chemistry, Kookmin University, Seoul, Republic of Korea

Antibody Research Institute, Kookmin University, Seoul, Republic of Korea

Contribution: Data curation (lead), Formal analysis (lead), Methodology (lead), Validation (lead), Visualization (lead), Writing - original draft (equal), Writing - review & editing (equal);2. Department of Chemistry, Kookmin University, Seoul, Republic of Korea

Antibody Research Institute, Kookmin University, Seoul, Republic of Korea

Contribution: Data curation (lead), Formal analysis (lead), Methodology (equal), Validation (lead), Writing - original draft (equal);3. Biopharmaceutical Chemistry Major, School of Applied Chemistry, Kookmin University, Seoul, Republic of Korea

Contribution: Data curation (supporting);4. Department of Chemistry, Kookmin University, Seoul, Republic of Korea

Abstract:G protein-coupled receptors (GPCRs) are in the spotlight as drug targets due to the fact that multiple research results have verified the correlation between the activation of GPCRs and disease indications. This is because the GPCRs are present across the cell membranes, which interact with either extracellular ligands or other types of compartments and simultaneously mediate intracellular signaling. Despite the importance of the GPCRs as drug targets, they are too difficult to express in soluble forms. Currently, the difficulty of preparing functional GPCRs and the lack of efficient antibody screening methods are the most challenging steps in the discovery of antibodies targeting GPCRs. In this study, we developed a powerful platform that facilitates isolating GPCR-specific antibodies by obviating difficulties in GPCR preparation. The strategies include (i) conjugation of the P9 peptide, an envelope protein of Pseudomonas phi6, to the N-terminus of GPCRs to improve the expression level of the GPCRs in Escherichia coli, (ii) stabilization of the GPCRs in their active forms with amphiphilic poly-γ-glutamate (APG) to shield the seven hydrophobic transmembrane domains, and (iii) further limiting the size of the APG complex to improve the chance to isolate antibodies targeting the proteins-of-interest. Capitalizing on the above strategies, we could prepare GPCR proteins in their active forms as facile as other general-soluble antigen proteins. Furthermore, this protocol was validated to be successful in discovering three individual GPCR-specific antibodies targeting glucagon-like peptide-1 receptor, C-X-C chemokine receptor type 4, and prostaglandin E2 receptor 4 in this study.
Keywords:amphiphilic poly-γ-glutamate  antibody discovery  G protein-coupled receptors  phage display  purification
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