Functional expression of human prostaglandin E2 receptor 4 (EP4) in E. coli and characterization of the binding property of EP4 with Gα proteins
- Authors
- Kim, N.H.; Kim, K.-S.; Shin, S.C.; Kim, E.E.; Yu, Y.G.
- Issue Date
- 2021-03
- Publisher
- Elsevier B.V.
- Citation
- Biochemistry and Biophysics Reports, v.25
- Abstract
- Human prostaglandin E2 receptor 4 (EP4) is one of the four subtypes of prostaglandin E2 (PGE2) receptors and belongs to the rhodopsin-type G protein-coupled receptor (GPCR) family. Particularly, EP4 is expressed in various cancer cells and is involved in cancer-cell proliferation by a G protein signaling cascade. To prepare an active form of EP4 for biochemical characterization and pharmaceutical application, this study designed a recombinant protein comprising human EP4 fused to the P9 protein (a major envelope protein of phi6 phage) and overexpressed the P9-EP4 fusion protein in the membrane fraction of E. coli. The solubilized P9-EP4 with sarkosyl (a strong anionic detergent) was purified by affinity chromatography. The purified protein was stabilized with amphiphilic polymers derived from poly-γ-glutamate. The polymer-stabilized P9-EP4 showed specific interaction with the alpha subunits of Gs or Gi proteins, and a high content of α-helical structure by a circular dichroism spectroscopy. Furthermore, the polymer-stabilized P9-EP4 showed strong heat resistance compared with P9-EP4 in detergents. The functional preparation of EP4 and its stabilization with amphiphilic polymers could facilitate both the biochemical characterization and pharmacological applications targeting EP4. ? 2020 The Authors
- Keywords
- complementary DNA; cyclic AMP; DNA fragment; G protein coupled receptor; G protein coupled receptor alpha; immunoglobulin G antibody; polymer; prostaglandin E receptor 4; unclassified drug; alpha helix; animal cell; Article; binding affinity; binding kinetics; binding site; carboxy terminal sequence; circular dichroism; conformational transition; controlled study; Escherichia coli; gene amplification; heat tolerance; mouse; nonhuman; protein binding; protein conformation; protein content; protein degradation; protein expression; protein protein interaction; protein purification; protein secondary structure; protein stability; thermostability; EP4; G protein; GPCR; Overexpression; PGE2; Purification
- ISSN
- 2405-5808
- URI
- https://pubs.kist.re.kr/handle/201004/117370
- DOI
- 10.1016/j.bbrep.2020.100871
- Appears in Collections:
- KIST Article > 2021
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